Plasmids of incompatibility group P (IncP) are remarkable for their autonomous replication in a wide variety of gram(-) bacteria and their conjugal transfer to gram(+) and gram(-) bacteria and yeast. They are valuable as tools for the genetic analysis of diverse bacteria of clinical, environmental, and technological importance. The promiscuity of IncP plasmids presents a significant health problem with respect to the dissemination and maintenance of antibiotic resistance genes among bacteria. Multiply resistant IncP plasmids have been isolated from a variety of bacterial species worldwide. The objective of these studies on the IncP plasmid RK2 is to understand the molecular and genetic basis for the replication and conjugal promiscuity of IncP plasmids. Studies by this laboratory revealed that RK2 displays a genetic complexity unmatched by any other group of plasmids. Eight operons are coregulated by various combinations of the negative-control determinants korA, B, C, E, F, and trbA. This regulatory network, the kil-kor regulon, encodes the replication initiator (trfA operon), transfer functions (kilB operon), regulatory genes (korABF operon), and unknown functions (kilA operon, kilC operon, kfrA operon, and two kilE operons). The host-lethal kil functions are proposed to be important for maintenance or host range. These studies will investigate mechanisms of RK2 gene regulation, functions of genes of the kil operons, and plasmid-host interactions. It is anticipated that these studies will increase the understanding of the basis for survival and dissemination of IncP plasmids in nature and provide new insights into plasmid-host relationships.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
2R01GM029085-14
Application #
2175386
Study Section
Microbial Physiology and Genetics Subcommittee 2 (MBC)
Project Start
1981-04-01
Project End
1998-03-31
Budget Start
1994-04-01
Budget End
1995-03-31
Support Year
14
Fiscal Year
1994
Total Cost
Indirect Cost
Name
Columbia University (N.Y.)
Department
Microbiology/Immun/Virology
Type
Schools of Medicine
DUNS #
064931884
City
New York
State
NY
Country
United States
Zip Code
10027
Siddique, Azeem; Figurski, David H (2012) Different phenotypes of Walker-like A box mutants of ParA homolog IncC of broad-host-range IncP plasmids. Plasmid 68:93-104
Siddique, Azeem; Figurski, David H (2002) The active partition gene incC of IncP plasmids is required for stable maintenance in a broad range of hosts. J Bacteriol 184:1788-93
Kachlany, Scott C; Fine, Daniel H; Figurski, David H (2002) Purification of secreted leukotoxin (LtxA) from Actinobacillus actinomycetemcomitans. Protein Expr Purif 25:465-71
Wilson, James W; Figurski, David H (2002) Host-specific incompatibility by 9-bp direct repeats indicates a role in the maintenance of broad-host-range plasmid RK2. Plasmid 47:216-23
Bhattacharyya, A; Figurski, D H (2001) A small protein-protein interaction domain common to KlcB and global regulators KorA and TrbA of promiscuous IncP plasmids. J Mol Biol 310:51-67
Rosche, T M; Siddique, A; Larsen, M H et al. (2000) Incompatibility protein IncC and global regulator KorB interact in active partition of promiscuous plasmid RK2. J Bacteriol 182:6014-26
Wilson, J W; Sia, E A; Figurski, D H (1997) The kilE locus of promiscuous IncP alpha plasmid RK2 is required for stable maintenance in Pseudomonas aeruginosa. J Bacteriol 179:2339-47
Jovanovic, O S; Figurski, D H (1997) A potential new gene (tccA) on IncP plasmid RK2 and transposon Tn1721: relationship of its product to the TrwC relaxase/helicase of IncW plasmid R388. Plasmid 38:220-3
Sia, E A; Kuehner, D M; Figurski, D H (1996) Mechanism of retrotransfer in conjugation: prior transfer of the conjugative plasmid is required. J Bacteriol 178:1457-64
Sia, E A; Roberts, R C; Easter, C et al. (1995) Different relative importances of the par operons and the effect of conjugal transfer on the maintenance of intact promiscuous plasmid RK2. J Bacteriol 177:2789-97

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