Three-dimensional structure of the surface protein layer (MW layer) of Bacillus brevis 47

Akio Tsuboi , Harald Engelhardt , Ute Santarius , Norihiro Tsukagoshi , Shigezo Udaka , Wolfgang Baumeister
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引用次数: 9

Abstract

The three-dimensional (3D) structure of one surface protein layer from Bacillus brevis 47, the middle wall (MW) layer, has been reconstructed from tilted-view electron micrographs after correlation averaging to a resolution of 2 nm. The MW layer has p6 symmetry with a center-to-center spacing of 18.3 nm and a minimum thickness of 5.5 nm. The reconstruction reveals a distinct domain structure: the heavier domain of six monomers jointly forms a massive core centered at the sixfold symmetry axis, and lighter domains interconnect adjacent unit cells. In addition, the larger domains collectively form a pore by making contact with each other towards the inner surface, while the smaller domains establish a second connectivity towards the outer surface of the S layer. The MW layer of B. brevis resembles the S layer of Acetogenium kivui in various aspects: they have very similar lattice parameters and highly reminiscent 3D structures; the pores penetrate through the whole core and appear to determine the porosity of the S layers.

短芽孢杆菌表面蛋白层(MW层)的三维结构
通过相关平均到2 nm的分辨率,用倾斜视图电子显微镜重建了短芽孢杆菌47的一个表面蛋白层,即中间壁层的三维(3D)结构。该纳米层具有p6对称性,中心间距为18.3 nm,最小厚度为5.5 nm。重建显示了一个独特的结构域:六个单体的较重结构域共同形成一个以六重对称轴为中心的巨大核心,较轻的结构域连接相邻的单元胞。此外,较大的畴通过向内表面相互接触共同形成孔隙,而较小的畴则建立了向S层外表面的第二次连通性。短叶曲菌的MW层在许多方面与基维醋酸菌的S层相似:它们具有非常相似的晶格参数和高度相似的三维结构;孔隙贯穿整个岩心,似乎决定了S层的孔隙度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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