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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of the cytoplasmic N-terminal domain of subunit I, a homolog of subunit a, of V-ATPase.
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Crystal structure of the cytoplasmic N-terminal domain of subunit I, a homolog of subunit a, of V-ATPase.

机译:V-ATPase的亚基I(亚基a的同系物)的胞质N端结构域的晶体结构。

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摘要

Subunit "a" is associated with the membrane-bound (V(O)) complex of eukaryotic vacuolar H(+)-ATPase acidification machinery. It has also been shown recently to be involved in diverse membrane fusion/secretory functions independent of acidification. Here, we report the crystal structure of the N-terminal cytosolic domain from the Meiothermus ruber subunit "I" homolog of subunit a. The structure is composed of a curved long central alpha-helix bundle capped on both ends by two lobes with similar alpha/beta architecture. Based on the structure, a reasonable model of its eukaryotic subunit a counterpart was obtained. The crystal structure and model fit well into reconstructions from electron microscopy of prokaryotic and eukaryotic vacuolar H(+)-ATPases, respectively, clarifying their orientations and interactions and revealing features that could enable subunit a to play a role in membrane fusion/secretion.
机译:亚基“ a”与真核液泡H(+)-ATPase酸化机制的膜结合(V(O))复合物相关。最近还显示出它与酸化无关地涉及多种膜融合/分泌功能。在这里,我们从亚单位a的Meiothermus ruber亚单位“ I”同源物报告了N末端胞质域的晶体结构。该结构由弯曲的长中央α-螺旋束组成,该束在两端均被两个具有相似alpha / beta结构的叶瓣所覆盖。基于该结构,获得了其对应物的真核亚基的合理模型。晶体结构和模型分别很好地适应了原核和真核液泡H(+)-ATPase的电子显微镜重建,从而阐明了它们的方向和相互作用,并揭示了可使亚基a在膜融合/分泌中发挥作用的特征。

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