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沿钼储存蛋白三重轴的多氧钼酸盐簇的结构多样性。

Structural diversity of polyoxomolybdate clusters along the three-fold axis of the molybdenum storage protein.

作者信息

Poppe Juliane, Warkentin Eberhard, Demmer Ulrike, Kowalewski Björn, Dierks Thomas, Schneider Klaus, Ermler Ulrich

机构信息

Max-Planck-Institut für Biophysik, Max-von-Laue-Straße 3, D-60438 Frankfurt am Main, Germany.

Biochemie I, Fakultät für Chemie, Universität Bielefeld, Universitätsstraße 25, D-33615 Bielefeld, Germany.

出版信息

J Inorg Biochem. 2014 Sep;138:122-128. doi: 10.1016/j.jinorgbio.2014.05.009. Epub 2014 May 28.

Abstract

The molybdenum storage protein (MoSto) can store more than 100 Mo or W atoms as discrete polyoxometalate (POM) clusters. Here, we describe the three POM cluster sites along the threefold axis of the protein complex based on four X-ray structures with slightly different polyoxomolybdate compositions between 1.35 and 2 Å resolution. In contrast to the Moα-out binding site occupied by an Mo3 cluster, the Moα-in and Moβ binding sites contain rather weak and non-uniform electron density for the Mo atoms (but clearly identifiable by anomalous data), suggesting the presence of POM cluster ensembles and/or degradation products of larger aggregates. The "Moα-in cluster ensemble" was interpreted as an antiprism-like Mo6 species superimposed with an Mo7 pyramide and the "Moβ cluster ensemble" as an Mo13 cluster (present mostly in a degraded form) composed of a pyramidal Mo7 and a Mo3 building block linked by three spatially separated MoOx units. Inside the ball-shaped Mo13 cluster sits an occluded central atom, perhaps a metal ion. POM cluster formation at the Moα-in and Moβ sites appears to be driven by filtering out and binding/protecting self-assembled transient species complementary to the protein template.

摘要

钼储存蛋白(MoSto)能够以离散的多金属氧酸盐(POM)簇的形式储存100多个钼或钨原子。在此,我们基于四个X射线结构,描述了蛋白质复合物沿三重轴的三个POM簇位点,这些结构在1.35至2 Å分辨率下具有略有不同的多钼酸盐组成。与被Mo3簇占据的Moα-out结合位点不同,Moα-in和Moβ结合位点的钼原子电子密度相当弱且不均匀(但通过反常数据可清晰识别),这表明存在POM簇集合体和/或较大聚集体的降解产物。“Moα-in簇集合体”被解释为与Mo7金字塔叠加的反棱柱状Mo6物种,“Moβ簇集合体”被解释为由金字塔状Mo7和通过三个空间分离的MoOx单元连接的Mo3结构单元组成的Mo13簇(大多以降解形式存在)。在球形的Mo13簇内部有一个被封闭的中心原子,可能是一个金属离子。Moα-in和Moβ位点的POM簇形成似乎是通过筛选并结合/保护与蛋白质模板互补的自组装瞬态物种来驱动的。

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