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MamK 是一种细菌肌动蛋白,在体内形成动态丝,受酸性蛋白 MamJ 和 LimJ 调控。

MamK, a bacterial actin, forms dynamic filaments in vivo that are regulated by the acidic proteins MamJ and LimJ.

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Mol Microbiol. 2011 Oct;82(2):342-54. doi: 10.1111/j.1365-2958.2011.07815.x. Epub 2011 Sep 14.

Abstract

Bacterial actins, in contrast to their eukaryotic counterparts, are highly divergent proteins whose wide-ranging functions are thought to correlate with their evolutionary diversity. One clade, represented by the MamK protein of magnetotactic bacteria, is required for the subcellular organization of magnetosomes, membrane-bound organelles that aid in navigation along the earth's magnetic field. Using a fluorescence recovery after photobleaching assay in Magnetospirillum magneticum AMB-1, we find that, like traditional actins, MamK forms dynamic filaments that require an intact NTPase motif for their turnover in vivo. We also uncover two proteins, MamJ and LimJ, which perform a redundant function to promote the dynamic behaviour of MamK filaments in wild-type cells. The absence of both MamJ and LimJ leads to static filaments, a disrupted magnetosome chain, and an anomalous build-up of cytoskeletal filaments between magnetosomes. Our results suggest that MamK filaments, like eukaryotic actins, are intrinsically stable and rely on regulators for their dynamic behaviour, a feature that stands in contrast to some classes of bacterial actins characterized to date.

摘要

与真核生物的肌动蛋白相比,细菌肌动蛋白是高度多样化的蛋白质,其广泛的功能被认为与其进化多样性相关。一个分支,由磁细菌的 MamK 蛋白代表,是磁小体亚细胞组织所必需的,磁小体是一种膜结合的细胞器,有助于沿着地球磁场导航。我们使用荧光恢复后光漂白测定法在 Magnetospirillum magneticum AMB-1 中发现,与传统的肌动蛋白一样,MamK 形成动态纤维,其在体内的周转需要完整的 NTPase 基序。我们还发现了两种蛋白质,MamJ 和 LimJ,它们具有冗余功能,可促进 MamK 纤维在野生型细胞中的动态行为。MamJ 和 LimJ 两者的缺失都会导致纤维变为静态,磁小体链被破坏,以及在磁小体之间异常积聚细胞骨架纤维。我们的结果表明,MamK 纤维与真核肌动蛋白一样,本质上是稳定的,并且依赖于调节剂来调节其动态行为,这一特征与迄今为止已确定的某些细菌肌动蛋白类相反。

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