4.5 Article

Competition between DivIVA and the nucleoid for ParA binding promotes segrosome separation and modulates mycobacterial cell elongation

期刊

MOLECULAR MICROBIOLOGY
卷 111, 期 1, 页码 204-220

出版社

WILEY
DOI: 10.1111/mmi.14149

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资金

  1. National Science Centre, Poland [2014/14/M/NZ1/00076]
  2. Maestro funding scheme, National Science Centre [2012/04/A/NZ1/00057]
  3. Wroclaw Centre of Biotechnology, programme of the Leading National Research Centre (KNOW)
  4. Polish Ministry of Science and Higher Education 'Mobilnosc Plus' [1083/MOB/2013/0]

向作者/读者索取更多资源

Although mycobacteria are rod shaped and divide by simple binary fission, their cell cycle exhibits unusual features: unequal cell division producing daughter cells that elongate with different velocities, as well as asymmetric chromosome segregation and positioning throughout the cell cycle. As in other bacteria, mycobacterial chromosomes are segregated by pair of proteins, ParA and ParB. ParA is an ATPase that interacts with nucleoprotein ParB complexes - segrosomes and non-specifically binds the nucleoid. Uniquely in mycobacteria, ParA interacts with a polar protein DivIVA (Wag31), responsible for asymmetric cell elongation, however the biological role of this interaction remained unknown. We hypothesised that this interaction plays a critical role in coordinating chromosome segregation with cell elongation. Using a set of ParA mutants, we determined that disruption of ParA-DNA binding enhanced the interaction between ParA and DivIVA, indicating a competition between the nucleoid and DivIVA for ParA binding. Having identified the ParA mutation that disrupts its recruitment to DivIVA, we found that it led to inefficient segrosomes separation and increased the cell elongation rate. Our results suggest that ParA modulates DivIVA activity. Thus, we demonstrate that the ParA-DivIVA interaction facilitates chromosome segregation and modulates cell elongation.

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