paper-with-me

홈 › Papers

The PomXYZ Proteins Self-Organize on the Bacterial Nucleoid to Stimulate Cell Division

2018-01-29

Cell division site positioning is precisely regulated to generate correctly sized and shaped daughters. We uncover a novel strategy to position the FtsZ cytokinetic ring at midcell in the social bacterium Myxococcus xanthus. PomX, PomY and the nucleoid-binding ParA/MinD ATPase PomZ self-assemble forming a large nucleoid-associated complex that localizes at the division site before FtsZ to directly guide and stimulate division. PomXYZ localization is generated through self-organized biased random motion on the nucleoid towards midcell and constrained motion at midcell. Experiments and theory show that PomXYZ motion is produced by diffusive PomZ fluxes on the nucleoid into the complex. Flux differences scale with the intracellular asymmetry of the complex and are converted into a local PomZ concentration gradient across the complex with translocation towards the higher PomZ concentration. At midcell, fluxes equalize resulting in constrained motion. Flux-based mechanisms may represent a general paradigm for positioning of macromolecular structures in bacteria.

📄 PDF Abstract BibTeX arXiv:1801.09549

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Can a flux-based mechanism explain positioning of protein clusters in a three-dimensional cell geometry?

2018-12-14 · Matthias Kober, Silke Bergeler, Erwin Frey

The plane of bacterial cell division must be precisely positioned. In the bacterium Myxococcus xanthus, the proteins PomX and PomY form a large cluster, which is tethered to the nucleoid by the ATPase PomZ and moves in a…

Spatial organization of bacterial transcription and translation

2016-08-29

In bacteria such as $\textit{Escherichia coli}$, DNA is compacted into a nucleoid near the cell center, while ribosomes$-$molecular complexes that translate messenger RNAs (mRNAs) into proteins$-$are mainly localized at …

Translation

Steric interactions and out-of-equilibrium processes control the internal organization of bacteria

2021-04-19 · Ander Movilla Miangolarra, Sophia Hsin-Jung Li, Jean-François Joanny, Ned S. Wingreen 외

Despite the absence of a membrane-enclosed nucleus, the bacterial DNA is typically condensed into a compact body - the nucleoid. This compaction influences the localization and dynamics of many cellular processes includi…

Translation

Condensation of nucleoid in Escherichia coli cell as a result of prolonged starvation

2019-01-31

Electron microscopy and X-ray diffraction studies of dormant E. coli cells revealed several forms of nucleoid condensation: quasi - nanocrystalline, quasi -liquid crystalline (or spore-like) and folded nucleosome - like …

Regulation of Pom cluster dynamics in Myxococcus xanthus

2018-01-18

Precise positioning of the cell division site is essential for the correct segregation of the genetic material into the two daughter cells. In the bacterium Myxococcus xanthus, the proteins PomX and PomY form a cluster o…

Friction