首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Membrane localization of MinD is mediated by a C-terminal motif that is conserved across eubacteria, archaea, and chloroplasts
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Membrane localization of MinD is mediated by a C-terminal motif that is conserved across eubacteria, archaea, and chloroplasts

机译:MinD的膜定位由在真细菌,古细菌和叶绿体中保守的C末端基序介导

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摘要

MinD is a widely conserved ATPase that has been demonstrated to play a pivotal role in selection of the division site in eubacteria and chloroplasts. It is a member of the large ParA superfamily of ATPases that are characterized by a deviant Walker-type ATP-binding motif. MinD localizes to the cytoplasmic face of the inner membrane in Eschercihia coli, and its association with the inner membrane is a prerequisite for membrane recruitment of the septation inhibitor MinC. However, the mechanism by which MinD associates with the membrane has proved enigmatic; it seems to lack a transmembrane domain and the amino acid sequence is devoid of hydrophobic tracts that might predispose the protein to interaction with lipids. In this study, we show that the extreme C-terminal region of MinD contains a highly conserved 8- to 12-residue sequence motif that is essential for membrane localization of the protein. We provide evidence that this motif forms an amphipathic helix that most likely mediates a direct interaction between MinD and membrane phospholipids. A model is proposed whereby the membrane-targeting motif mediates the rapid cycles of membrane attachment-release-reattachment that are presumed to occur during pole-to-pole oscillation of MinD in E. coli.
机译:MinD是一种广泛保存的ATPase,已被证明在选择真细菌和叶绿体中的分裂位点中起关键作用。它是ATPase大型ParA超家族的成员,其特征在于其具有异常的Walker型ATP结合基序。 MinD定位于大肠杆菌内膜的细胞质表面,其与内膜的结合是分离抑制剂MinC膜募集的先决条件。但是,MinD与膜结合的机制已被证实是神秘的;它似乎缺乏跨膜结构域,并且氨基酸序列没有疏水性片段,可能使蛋白质易于与脂质相互作用。在这项研究中,我们表明MinD的极端C端区域包含高度保守的8至12个残基的序列基序,这对于蛋白质的膜定位至关重要。我们提供的证据表明,该基序形成两亲性螺旋,最有可能介导MinD与膜磷脂之间的直接相互作用。提出了一种模型,其中以膜为目标的基序介导了膜附着-释放-重新附着的快速循环,该循环被认为发生在MinD在大肠杆菌中的极对极振荡期间。

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