Dissection of the ATPase Active Site of P1 ParA Reveals Multiple Active Forms Essential for Plasmid Partition
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference48 articles.
1. Partition systems of bacterial plasmids;Funnell,2004
2. Pushing and pulling in prokaryotic DNA segregation;Gerdes;Cell,2010
3. Surfing biological surfaces: exploiting the nucleoid for partition and transport in bacteria;Vecchiarelli;Mol. Microbiol,2012
4. The homologous operons for P1 and P7 plasmid partition are autoregulated from dissimilar operator sites;Hayes;Mol. Microbiol,1994
5. The P1 plasmid-partition system synthesizes two essential proteins from an autoregulated operon;Friedman;Plasmid,1988
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1. Three factors ParA, TipN, and DnaA-mediated chromosome replication initiation are contributors of centromere segregation in Caulobacter crescentus;Molecular Biology of the Cell;2024-05-01
2. Mutational analysis of the F plasmid partitioning protein ParA reveals novel residues required for oligomerisation and plasmid maintenance;2024-03-18
3. TipN’s involvement with centromere segregation in Caulobacter crescentus;2023-12-21
4. Molecular Analysis of pSK1 par: A Novel Plasmid Partitioning System Encoded by Staphylococcal Multiresistance Plasmids;Journal of Molecular Biology;2022-10
5. Catching a Walker in the Act—DNA Partitioning by ParA Family of Proteins;Frontiers in Microbiology;2022-05-26
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