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From the Cover: Accessory factors promote AlfA-dependent plasmid segregation by regulating filament nucleation disassembly and bundling

机译:从封面开始:辅助因子通过调节细丝成核分解和捆绑促进AlfA依赖的质粒分离

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摘要

In bacteria, some plasmids are partitioned to daughter cells by assembly of actin-like proteins (ALPs). The best understood ALP, ParM, has a core set of biochemical properties that contributes to its function, including dynamic instability, spontaneous nucleation, and bidirectional elongation. AlfA, an ALP that pushes plasmids apart in Bacillus, relies on a different set of underlying properties to segregate DNA. AlfA elongates unidirectionally and is not dynamically unstable; its assembly and disassembly are regulated by a cofactor, AlfB. Free AlfB breaks up AlfA bundles and promotes filament turnover. However, when AlfB is bound to the centromeric DNA sequence, parN, it forms a segrosome complex that nucleates and stabilizes AlfA filaments. When reconstituted in vitro, this system creates polarized, motile comet tails that associate by antiparallel filament bundling to form bipolar, DNA-segregating spindles.
机译:在细菌中,一些质粒通过肌动蛋白样蛋白(ALP)的组装分配到子细胞中。最为人所知的ALP ParM具有一组核心的生化特性,可发挥其功能,包括动态不稳定性,自发成核和双向伸长。 AlfA是一种在芽孢杆菌中将质粒推开的ALP,它依赖于一组不同的基础特性来分离DNA。 AlfA是单向拉伸的,并且不是动态不稳定的。它的组装和拆卸受辅助因子AlfB的调节。游离的AlfB会破坏AlfA束,并促进细丝周转。但是,当AlfB与着丝粒DNA序列parN结合时,它会形成脂质体复合物,该复合物可成核并稳定AlfA细丝。当在体外重建时,该系统产生极化的,活动的彗尾,通过反平行的细丝束束结合形成双极的,DNA分离的纺锤体。

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