1887
Preview this article:

There is no abstract available.

Loading

Article metrics loading...

/content/journal/micro/10.1099/00221287-138-1-1
1992-01-01
2024-04-26
Loading full text...

Full text loading...

/deliver/fulltext/micro/138/1/mic-138-1-1.html?itemId=/content/journal/micro/10.1099/00221287-138-1-1&mimeType=html&fmt=ahah

References

  1. Abeles A., Friedman S. A., Austin S. J. 1985; Partition of unit-copy miniplasmids to daughter cells. III. The DNA sequence and functional organisation of the PI partition region. Journal of Molecular Biology 185 :261–272
    [Google Scholar]
  2. Abeles A. L., Austin S. J., Reaves L. D. 1989; Protein DNA interactions in regulation of PI plasmid replication. Journal of Bacteriology 171 :43–52
    [Google Scholar]
  3. Allen S. P., Blaschek H. P. 1990; Plasmid copy number and stability determination in Clostridium perfringens transformants. Fems Microbiology Letters 72 :323–328
    [Google Scholar]
  4. Austin S. J. 1988; Plasmid partition. Plasmid 20 :1–9
    [Google Scholar]
  5. Austin S., Abeles A. 1983a; Partition of unit-copy miniplasmids to daughter cells I. PI and F miniplasmids contain discrete, interchangeable sequences sufficient to promote equipartition. Journal of Molecular Biology 169 :353–372
    [Google Scholar]
  6. Austin S., Abeles A. 1983b; Partition of unit-copy miniplasmids to daughter cells. II. The partition region of miniplasmid PI encodes an essential protein and a centromere-like site at which it acts. Journal of Molecular Biology 169 :373–387
    [Google Scholar]
  7. Austin S., Nordström K. 1990; Partition-mediated incompatibility of bacterial plasmids. Cell 60 :351–354
    [Google Scholar]
  8. Austin S., Wierzbicki A. 1983; Two mini-F encoded proteins are essential for equipartition. Plasmid 10 :73–81
    [Google Scholar]
  9. Austin S., Ziese M., Sternberg N. 1981; A novel role for site specific recombination in maintenance of bacterial replicons. Cell 25 :729–736
    [Google Scholar]
  10. Austin S., Friedman S., Ludtke D. 1986; Partition functions of unit-copy plasmids can stabilize the maintenance of plasmid pBR322 at low copy number. Journal of Bacteriology 168 :1010–1013
    [Google Scholar]
  11. Bechhofer D. H., Kornaki J. A., Firshein W. B., Figurski D. H. 1986; Gene control in broad host range plasmid RK2: expression, polypeptide product and multiple regulatory functions of korB . Proceedings of the National Academy of Sciences of the United States of America 83 394–398
    [Google Scholar]
  12. Biek D. P., Cohen S. N. 1989; Involvement of integration host factor (IHF) in maintenance of plasmid pSClOl in Escherichia coli.Characterization of pSClOl mutants that replicate in the absence of IHF. Journal of Bacteriology 171 :2056–2065
    [Google Scholar]
  13. De Boer P. A. J., Crossley R. E., Rothfield L. I. 1989; A division inhibitor and a topological specificity factor encoded by the miniceli locus determine proper placement of the division septum in E.coli . Cell 56 :641–649
    [Google Scholar]
  14. Bernard P., Couturier M. 1991; The 41 carboxy terminal residues of the mini-F plasmid CcdA protein are sufficient to antagonize the killer activity of the CcdB protein. Molecular and General Genetics 226 :297–304
    [Google Scholar]
  15. Bravo A., De Torrontegui G, Diaz R. 1987; Identification of components of a new stability system of plasmid Rl, ParD, that is close to the origin of replication of this plasmid. Molecular and General Genetics 210 :101–110
    [Google Scholar]
  16. Broach J. R., Hicks J. B. 1980; Replication and recombination functions associated with the yeast plasmid 2 μ circle. Cell 21 :1513–1523
    [Google Scholar]
  17. Bron S., Luxen E., Swart P. 1988; Instability of recombinant pUB11O plasmids in Bacillus subtilis: plasmid-encoded stability function and effects of DNA inserts. Plasmid 19 231–241
    [Google Scholar]
  18. Casaregola S., Norris V., Goldberg M., Holland I. B. 1990; Identification of a 180 kD protein in Escherichia coli related to a yeast heavy-chain myosin. Molecular Microbiology 4 :505–511
    [Google Scholar]
  19. Cashmore A. M., Albury M. S., Hadfield C., Meacock P. A. 1986; Genetic analysis of partitioning functions encoded by the 2 μm circle of Saccharomyces cerevisiae . Molecular and General Genetics 203 :154–162
    [Google Scholar]
  20. Cashmore A. M., Albury M. S., Hadfield C., Meacock P. A. 1988; The 2 μm D region plays a role in yeast plasmid maintenance. Molecular and General Genetics 212 :426–431
    [Google Scholar]
  21. Cerin H., Hackett J. 1989; Molecular cloning and analysis of the incompatibility and partition functions of the virulence plasmid of Salmonella typhimurium . Microbial Pathogenesis 7 :85–99
    [Google Scholar]
  22. Chang S., Chang S.-Y., Gray O. 1987; Structural and genetic analysis of a par locus that regulates plasmid partition in Bacillus subtilis . Journal of Bacteriology 169 :3952–3962
    [Google Scholar]
  23. Commanducci M., Ricci S., Ratti G. 1988; The structure of a plasmid of Chlamydia trachomatis believed to be required for growth in mammalian cells. Molecular Microbiology 2 :531–538
    [Google Scholar]
  24. Davis M. A., Austin S. J. 1988; Recognition of the PI plasmid centromere analog involves binding of the ParB protein and is modified by a specific host factor. EMBO Journal 7 :1881–1888
    [Google Scholar]
  25. Davis M. A., Martin K. A., Austin S. J. 1990; Specificity switching of the PI plasmid centromere-like site. EMBO Journal 9 :991–998
    [Google Scholar]
  26. Davis M. A., Martin K., Austin S. 1991; Biochemical activities of the P1 partition proteins. Plasmid 25 :247–248
    [Google Scholar]
  27. Devine K. M., Hogan S. T., Higgins D. G., Mcconnell D. J. 1989; Replication and segregational stability of Bacillus plasmid pBAAl. Journal of Bacteriology 171 :1166–1172
    [Google Scholar]
  28. Diffley J. F. X., Stillman B. 1989; Transcriptional silencing and lamins. Nature, London 342 :24
    [Google Scholar]
  29. Dobson M. J., Yull F. E., Molina M., Kingsman S. M., Kingsman A. J. 1988; Reconstruction of the yeast 2 μm plasmid partitioning mechanism. Nucleic Acids Research 16 :7103–7117
    [Google Scholar]
  30. Donachie W. D., Begg K. J. 1989; Chromosome partition in Escherichia coli requires postreplication protein synthesis. Journal of Bacteriology 171 :5405–5409
    [Google Scholar]
  31. Ezaki B., Mori H., Ogura T., Hiraga S. 1990; Possible involvement of the ugpA gene product in the stable maintenance of mini-F plasmid in Escherichia coli . Molecular and General Genetics 223 :361–368
    [Google Scholar]
  32. Friedman S. A., Austin S. J. 1988; The PI plasmid-partition system synthesizes two essential proteins from an autoregulated operon. Plasmid 19 103–112
    [Google Scholar]
  33. Funnell B. E. 1988a; Mini-F plasmid partitioning: excess ParB protein destabilizes plasmids containing the centromere parS . Journal of Bacteriology 170 :954–960
    [Google Scholar]
  34. Funnell B. E. 19886; Participation of Escherichia coli integration host factor in the PI plasmid partition system. Proceedings of the National Academy of Sciences of the United States of America 85 6657–6661
    [Google Scholar]
  35. Futcher A. B. 1986; Copy number amplification of the 2 μm circle plasmid of Saccharomyces cerevisiae . Journal of Theoretical Biology 119 :197–204
    [Google Scholar]
  36. Gallie D. R., Kado C. I. 1987; Agrobacterium tumefaciens pTAR parA promoter region involved in autoregulation incompatibility and plasmid partitioning. Journal of Molecular Biology 193 :465–478
    [Google Scholar]
  37. Garnier T., Saurin W., Cole S. T. 1987; Molecular characterization of the resolvase gene res carried by a multicopy plasmid from Clostridium perfringens.Common evolutionary origin for prokaryotic site specific recombinases. Molecular Microbiology 1 :371–376
    [Google Scholar]
  38. Gerdes K., Molin S. 1986; Partitioning of plasmid R1 - structural and functional analysis of the parA locus. Journal of Molecular Biology 190 :269–279
    [Google Scholar]
  39. Gerdes K., Thisted T., Martinussen J. 1990a; Mechanism of post-segregational killing by the hok/sok system of plasmid R1 : sok antisense RNA regulates formation of a hok mRNA species correlated with killing of plasmid-free cells. Molecular Microbiology 4 :1807–1818
    [Google Scholar]
  40. Gerdes K., Poulsen L. K., Thisted T., Nielsen A. K., Martinussen J., Andreasen P. H. 1990b; The hok killer gene family in Gram-negative bacteria. New Biologist 2 :946–956
    [Google Scholar]
  41. Gerlitz M., Hrabak O., Schwab H. 1990; Partitioning of broad-host-range plasmid RP4 is a complex system involving site-specific recombination. Journal of Bacteriology 172 :6194–6203
    [Google Scholar]
  42. Gibbons I. R., Gibbons B. H., Mocz G., Asai D. J. 1991; Multiple nucleotide-binding sites in the sequence of dynein β heavy chain. Nature, London 352 :640–643
    [Google Scholar]
  43. Gleave A. P., Mountain A., Thomas C. M. 1990; Use of a novel cassette to label phenotypically a cryptic plasmid of Bacillus subtilis and map loci involved in its stable maintenance. Journal of General Microbiology 136 :905–912
    [Google Scholar]
  44. Golub E. I., Panzer H. A. 1988; The F factor of Escherichia coli carries a locus of stable plasmid inheritance stm, similar to the parB locus of plasmid Rl. Molecular and General Genetics 214 :353–357
    [Google Scholar]
  45. Green E. W., Schaechter M. 1972; The mode of segregation of the bacterial cell membrane. Proceedings of the National Academy of Sciences of the United States of America 69 2312–2316
    [Google Scholar]
  46. Grindley N. D. F., Reed R. 1985; Transpositional recombination in prokaryotes. Annual Review of Biochemistry 54 :863–896
    [Google Scholar]
  47. Gustafsson P., Wolf-Watz H., Lind L., Johansson K.-E, Nordström K. 1983; Binding between the par region of plasmids Rl and pSClOl and the outer membrane fraction of the host bacteria. EMBO Journal 2 :27–32
    [Google Scholar]
  48. Hakkaart M. J. J., Van Den Elzen D. J. M., Veltkamp E., Nijkamp H. J. J. 1984; Maintenance of multicopy plasmid CloDF13 in E. coli cells: evidence for site specific recombination at parB . Cell 36 :203–209
    [Google Scholar]
  49. Helsberg M., Eichenlaub R. 1986; Twelve 43-base-pair repeats map in a cis-acting region essential for partition of plasmid mini-F. Journal of Bacteriology 165 :1043–1045
    [Google Scholar]
  50. Hiraga S., Jaffé A., Ogura T., Mori H., Takahashi H. 1986; F plasmid ccd mechanism in E. coli . Journal of Bacteriology 166 :100–104
    [Google Scholar]
  51. Hiraga S., Niki H., Ogura T., Ichinose C., Mori H., Ezaki B., Jaffé A. 1989; Chromosome partitioning in Escherichia coli: novel mutants producing anucleate cells. Journal of Bacteriology 171 :1496–1505
    [Google Scholar]
  52. Hiraga S., Ogura T., Niki H., Ichinose C., Mori H. 1990; Positioning of replicated chromosomes in Escherichia coli . Journal of Bacteriology 172 :31–39
    [Google Scholar]
  53. Hiraga S., Niki H., Imamura R., Ogura T., Yamanaka K., Feng J., Ezaki B., Jaffé A. 1991; Mutants defective in chromosome partitioning in E. coli . Research in Microbiology 142 :189–194
    [Google Scholar]
  54. Hussain K., Begg K. J., Salmond G. P. C., Donachie W. D. 1987a; par D: a new gene coding for a protein required for chromosome partitioning and septum localization in Escherichia coli . Molecular Microbiology 1 :73–81
    [Google Scholar]
  55. Hussain K., Elliot E. J., Salmond G. P. 1987b; The ParD-mutant of Escherichia coli also carries a gyrA am mutation. The complete sequence of gyrA . Molecular Microbiology 1 :259–273
    [Google Scholar]
  56. Jacob F., Brenner F., Cuzin F. 1963; On the regulation of DNA replication in bacteria. Cold Spring Harbor Symposia on Quantitative Biology 28 :329–348
    [Google Scholar]
  57. Jaffé A., Ogura T., Hiraga S. 1985; Effects of the ccd function of the F plasmid on bacterial growth. Journal of Bacteriology 163 :841–849
    [Google Scholar]
  58. Jagura-Burdzy G., Ibbotson J. P., Thomas C. M. 1991; The korF region of broad-host-range plasmid RK2 encodes two polypeptides with transcriptional repressor activity. Journal of Bacteriology 173 :826–833
    [Google Scholar]
  59. Jones I. M., Primrose S. B., Robinson A., Ellwood D. C. 1980; Maintenance of some ColEl-type plasmids in chemostat culture. Molecular and General Genetics 180 :579–584
    [Google Scholar]
  60. Kato J., Nishimura Y., Yamada M., Suzuki H., Hirota Y. 1988; Gene organization in the region containing a new gene involved in chromosome partition in Escherichia coli . Journal of Bacteriology 170 :3967–3977
    [Google Scholar]
  61. Kato J., Nishimura Y., Suzuki H. 1989; Escherichia coli par A is an allele of the gyrB gene. Molecular and General Genetics 217 :178–181
    [Google Scholar]
  62. Kato J., Nishimura Y., Imamamura R., Niki H., Hiraga S., Suzuki H. 1990; New topoisomerase essential for chromosome segregation in E. coli . Cell 63 :393–404
    [Google Scholar]
  63. Kurusu Y., Satoh Y., Inui M., Kohama K., Kobayashi M., Terasawa M., Yukawa H. 1991; Identification of plasmid partition function in coryneform bacteria. Applied and Environmental Microbiology 57 :759–764
    [Google Scholar]
  64. Kusukawa N., Mori H., Kondo A., Hiraga S. 1987; Partitioning of the F plasmid : overproduction of an essential protein for partition inhibits plasmid maintenance. Molecular and General Genetics 208 :365–372
    [Google Scholar]
  65. Lane D., De Feyter R., Kennedy M., Phua S.-H., Semon D. 1986; D-protein of mini-F plasmid acts as a repressor of transcription and as a site-specific resolvase. Nucleic Acids Research 14 :9713–9728
    [Google Scholar]
  66. Lane D., Rothenbuehler R., Merrillat A.-M., Aiken C. 1987; Analysis of the F plasmid centromere. Molecular and General Genetics 207 :406–412
    [Google Scholar]
  67. Leonhardt H. 1990; identification of a low-copy-number mutation within the pUBllO replicón and its effect on plasmid stability in Bacillus subtilis . Gene 94 :121–124
    [Google Scholar]
  68. Leonhardt H., Alonso J. C. 1988; Construction of a shuttle vector for inducible gene expression in Escherichia coli and Bacillus subtilis . Journal of General Microbiology 134 :605–609
    [Google Scholar]
  69. Lin E. C. C., Hirota Y., Jacob F. 1971; On the process of cellular division in Escherichia coli. VI. Use of a methyl cellulose autoradiographic method for the study of cellular division in Escherichia coli . Journal of Bacteriology 108 :375–385
    [Google Scholar]
  70. Loh S. M., Ray A., Crom D. S., O’GORMAN L. E., Skurray R. A. 1986; Location of a second partitioning system (parL) on the F plasmid. FEMS Microbiology Letters 37 :179–182
    [Google Scholar]
  71. Loh S. M., Cram D. S., Skurray R. A. 1988; Nucleotide sequence and transcriptional analysis of a third function (flm) involved in F plasmid maintenance. Gene 66 :259–268
    [Google Scholar]
  72. Ludtke D. N., Eichorn B. G., Austin S. J. 1989; Plasmid-partition functions of the P7 prophage. Journal of Molecular Biology 209 :393–406
    [Google Scholar]
  73. Manen D., Goebel T., Caro L. 1990; The par region of pSClOl affects plasmid copy number as well as stability. Molecular Microbiology 4 :1839–1846
    [Google Scholar]
  74. Martin K. A., Friedman S. A., Austin S. J. 1987; Partition site of the P1 plasmid. Proceedings of the National Academy of Sciences of the United States of America 84 8544–8547
    [Google Scholar]
  75. Martin K. A., Davis M. A., Austin S. 1991; Fine-structure analysis of the PI plasmid partition site. Journal of Bacteriology 173 :3630–3634
    [Google Scholar]
  76. Miller J. R., Kline B. C. 1979; Biochemical characterization of nonintegrated plasmid-folded chromosome complexes : sex factor F and the Escherichia coli nucleoid. Journal of Bacteriology 137 :885–890
    [Google Scholar]
  77. Miller C. A., Beaucage S. L., Cohen S. N. 1990; Role of DNA superhelicity in partitioning of the pSClOl plasmid. Cell 62 :127–133
    [Google Scholar]
  78. Min Y. N., Tabuchi A., Fan Y. L., Womble D. D., Rownd R. H. 1988; Complementation of mutants of the stability locus of IncFII plasmid NR1 - essential functions of the trans-acting stbA and stbB gene products. Journal of Molecular Biology 204 :345–356
    [Google Scholar]
  79. Mori H., Kondo A., Ohshima A., Ogura T., Hiraga S. 1986; Structure and function of the F plasmid genes essential for partitioning. Journal of Molecular Biology 192 :1–15
    [Google Scholar]
  80. Mori H., Mori Y., Ichinose C., Niki H., Ogura T., Kato A., Hiraga S. 1989; Purification and characterization of SopA and SopB proteins essential for F plasmid partitioning. Journal of Biological Chemistry 264 :15535–15541
    [Google Scholar]
  81. Motallebi-Veshareh M., Rouch D. A., Thomas C. M. 1990; A family of ATPases involved in active partitioning of diverse bacterial plasmids. Molecular Microbiology 4 :1445–1463
    [Google Scholar]
  82. Mulder E., El’Bouhali M., Pas E., Woldringh C. L. 1990; The Escherichia coli minB mutation resembles gyrB in defective nucleoid segregation and decreased negative supercoiling of plasmids. Molecular and General Genetics 221 :87–93
    [Google Scholar]
  83. Niki H., Jaffé A., Imamura R., Ogura T., Hiraga S. 1991; The new gene mukB codes for a 177 kd protein with coiled-coil domains involved in chromosome partitioning of E. coli . EMBO Journal 10 :183–193
    [Google Scholar]
  84. Nishiguchi R., Takanami M., Oka A. 1987; Characterization and sequence determination of the replicator region in the hairy- root-inducing plasmid pRiA4b. Molecular and General Genetics 206 :1–8
    [Google Scholar]
  85. Nordström K., Austin S. J. 1989; Mechanisms that contribute to the stable segregation of plasmids. Annual Review of Genetics 23 :37–69
    [Google Scholar]
  86. Norris V., Alliotte T., Jaffë A., D’Ari R. 1986; DNA replication termination in Escherichia coli par B (a dnaG allele), par A , and gyrB mutants affected in DNA distribution. Journal of Bacteriology 168 :494–504
    [Google Scholar]
  87. Novick R. P. 1987; Plasmid incompatibility. Microbiological Reviews 51 :381–395
    [Google Scholar]
  88. Obar R. A., Collins C. A., Hammarback J. A., Shpetner H. S., Vallee R. B. 1990; Molecular cloning of the microtubule-associated mechanochemical enzyme dynamin reveals homology with a new family of GTP-binding proteins. Nature, London 347 :256–261
    [Google Scholar]
  89. O’Connor M. B., Malamy M. H. 1984; Role of the F factor oriVI region in recA-independent illegitimate recombination : Stable replicon fusions of the derivative pOX38 and pBR322 related plasmids. Journal of Molecular Biology 175 :263–284
    [Google Scholar]
  90. Ogawa K. 1991; Four ATP-binding sites in the midregion of the β heavy chain of dynein. Nature, London 352 :643–645
    [Google Scholar]
  91. Ogura T., Hiraga S. 1983; Mini-F plasmid genes that couple host cell division to plasmid proliferation. Proceedings of the National Academy of Sciences of the United States of America 80 4784–4788
    [Google Scholar]
  92. Ogura T., Niki H., Kano Y., Imamoto F., Hiraga S. 1990a; Maintenance of plasmids in HU and IHF mutants of Escherichia coli . Molecular and General Genetics 220 :197–203
    [Google Scholar]
  93. Ogura T., Niki H., Mori H., Morita M., Hasegawa M., Ichinose C., Hiraga S. 1990b; Identification and characterization of gyr B mutants of Escherichia coli that are defective in partitioning of mini-F plasmids. Journal of Bacteriology 172 :1562–1568
    [Google Scholar]
  94. Orr E., Fairweather N., Holland B., Pritchard R. H. 1979; Isolation and characterisation of a strain carrying a conditional lethal mutation in the cou gene of Escherichia coli K12. Molecular and General Genetics 177 :103–112
    [Google Scholar]
  95. Roberts R. C., Burioni R., Helinski D. R. 1990; Genetic characterization of the stabilizing functions of a region of broad-host-range plasmid RK2. Journal of Bacteriology 172 :6204–6216
    [Google Scholar]
  96. Ruiz-Echevarría M. J., De Torrontegui G., Giménez-Gallego G., Díaz-Orejas R. 1991; Structural and functional comparison between the stability systems ParD of plasmid R1 and Ccd of plasmid F. Molecular and General Genetics 225 :355–362
    [Google Scholar]
  97. Schmidhauser T. J., Bechhofer D. H., Figurski D. H., Helinski D. R. 1989; Host-specific effects of the korA-korB operon and oriT region on the maintenance of miniplasmid derivatives of broad host- range plasmid RK2. Plasmid 21 99–112
    [Google Scholar]
  98. Schreiner H. C., Bechhofer D. H., Pohlman R. F., Young C., Borden P. A., Figurski D. H. 1985; Replication control in promiscuous plasmid RK2 : kil and kor functions affect expression of the essential trfA gene. Journal of Bacteriology 163 :228–237
    [Google Scholar]
  99. Shingler V., Thomas C. M. 1984; Transcription in the trfA region of broad host range plasmid RK2 is regulated by trfB and korB . Molecular and General Genetics 195 :523–529
    [Google Scholar]
  100. Smith C. A., Shingler V., Thomas C. M. 1984; The trfA and trfB promoter regions of broad host range plasmid RK2 share common potential regulatory sequences. Nucleic Acids Research 12 :3619–3630
    [Google Scholar]
  101. Steck T. R., Drlica K. 1984; Bacterial chromosome segregation: evidence for DNA gyrase involvement in decatenation. Cell 36 :1081–1088
    [Google Scholar]
  102. Stenzel T. T., Patel P., Bastia D. 1987; The integration host factor of Escherichia coli binds to bent DNA at the origin of replication of the plasmid pSClOl. Cell 49 :709–717
    [Google Scholar]
  103. Stirling C. J., Stewart G., Sherratt D. J. 1988; Multicopy plasmid stability in Escherichia coli requires host-encoded functions that lead to plasmid site-specific recombination. Molecular and General Genetics 214 :80–84
    [Google Scholar]
  104. Summers D. K. 1991; The kinetics of plasmid loss. Trends in Biotechnology 9 :273–278
    [Google Scholar]
  105. Summers D. K., Sherratt D. J. 1984; Multimerization of high copy number plasmids causes instability: ColE1 encodes a determinant essential for plasmid monomerization and stability. Cell 36 :1097–1103
    [Google Scholar]
  106. Tabata S., Hooykaas P. J. J., Oka A. 1989; Sequence determination and characterization of the replicator region in the tumor-inducing plasmid pTiB6S3. Journal of Bacteriology 171 :1665–1672
    [Google Scholar]
  107. Tabuchi A., Min Y., Kim C. K., Fan Y., Womble D. D., Rownd R. H. 1988; Genetic organisation and nucleotide sequence of the stability locus of IncFII plasmid NR1. Journal of Molecular Biology 202 :511–525
    [Google Scholar]
  108. Tam J. E., Kline B. C. 1989; The F plasmid ccd autorepressor is a complex of CcdA and CcdB proteins. Molecular and General Genetics 219 :26–32
    [Google Scholar]
  109. Theophilus B. D. M., Thomas C. M. 1987; Nucleotide sequence of the transcriptional repressor gene korB which plays a key role in regulation of the copy number of broad host range plasmid RK2. Nucleic Acids Research 15 :7443–7450
    [Google Scholar]
  110. Theophilus B. D. M., Cross M. A., Smith C. A., Thomas C. M. 1985; Regulation of the trfA and trfB promoters of broad host range plasmid RK2.Identification of sequences essential for regulation by trfB/kor A/kor D . Nucleic Acids Research 13 :8129–8142
    [Google Scholar]
  111. Thomas C. M. 1986; Evidence for the involvement of the incC locus of broad host range plasmid RK2 in plasmid maintenance. Plasmid 16 15–29
    [Google Scholar]
  112. Thomas C. M., Jagura-Burdzy G. 1991; Replication and segregation: the replicon hypothesis revisited. Symposia of the Society for General Microbiology 47 : (in the Press).
    [Google Scholar]
  113. Thomas C. M., Smith C. A. 1986; The trfB region of broad host range plasmid RK2: the nucleotide sequence reveals incC and key regulatory gene trfB/korA/korD as overlapping genes. Nucleic Acids Research 14 :4453–4469
    [Google Scholar]
  114. Thomas C. M., Theophilus B. D. M., Johnston L., Jagura-Burdzy J., Schlif W., Lurz R., Lanka E. 1990; Identification of a seventh operon on plasmid RK2 regulated by the kor A gene product. Gene 89 29–35
    [Google Scholar]
  115. Tinge S. A., Curtiss R. III. 1990; Isolation of the replication and partitioning regions of the Salmonella typhimurium virulence plasmid and stabilization of heterologous replicons. Journal of Bacteriology 172 :5266–5277
    [Google Scholar]
  116. Tsuchimoto S., Ohtsubo E. 1989; Effect of the pem system on stable maintenance of plasmid R100 in various Escherichia coli hosts. Molecular and General Genetics 215 :463–468
    [Google Scholar]
  117. Tsuchimoto S., Ohtsubo H., Ohtsubo E. 1988; Two genes, pemK and pemI, responsible for stable maintenance of resistance plasmid R100. Journal of Bacteriology 170 :1461–1466
    [Google Scholar]
  118. Tucker W. T., Miller C. A., Cohen S. N. 1984; Structural and functional analysis of the par region of the pSClOl plasmid. Cell 38 :191–201
    [Google Scholar]
  119. Vale R. D., Goldstein S. B. 1990; One motor, many tails: an expanding repertoire of force-generating enzymes. Cell 60 :883–885
    [Google Scholar]
  120. Volkert F. C., Broach J. R. 1986; Site specific recombination promotes plasmid amplification in yeast. Cell 46 :541–550
    [Google Scholar]
  121. Wahle E., Kornberg A. 1988; The partition locus of plasmid psc101 is a specific binding site for DNA gyrase. EMBO Journal 7 :1889–1895
    [Google Scholar]
  122. Watanabe E., Inamoto S., Lee M.-H., Kim S. U., Ogua T., Mori H., Hiraga S., Yamasaki M., Nagai K. 1989; Purification and characterisation of the sopB gene product which is responsible for stable maintenance of mini-F plasmid. Molecular and General Genetics 218 :431–436
    [Google Scholar]
  123. Watanabe H., Arakawa E., Ito K.-L, Kato J.-L, Nakamura A. 1990; Genetic analysis of an invasion region by use of a Tn3-lac transposon and identification of a second positive regulator gene, invE, for cell invasion of Shigella sonnei: significant homology of InvE with ParB of plasmid P1. Journal of Bacteriology 172 :619–629
    [Google Scholar]
  124. Wu L.-C.C., Fisher P. A., Broach J. R. 1987; A yeast plasmid partitioning protein is a karyoskeletal component. Journal of Biological Chemistry 262 :883–891
    [Google Scholar]
  125. Young C., Burlage R. S., Figurski D. H. 1987; Control of the kil A gene of the broad-host-range plasmid RK2: involvement of korA, korB, and a new gene, korE . Journal of Bacteriology 169 :1315–1320
    [Google Scholar]
http://instance.metastore.ingenta.com/content/journal/micro/10.1099/00221287-138-1-1
Loading
/content/journal/micro/10.1099/00221287-138-1-1
Loading

Data & Media loading...

This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error