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一种用于衣原体 MOMP 的三维三聚体 β-桶模型包含革兰氏阴性菌孔蛋白的保守和新颖元件。

A 3-dimensional trimeric β-barrel model for Chlamydia MOMP contains conserved and novel elements of Gram-negative bacterial porins.

机构信息

Department Chemistry and Biochemistry, University of California San Diego, San Diego, California, United States of America.

出版信息

PLoS One. 2013 Jul 25;8(7):e68934. doi: 10.1371/journal.pone.0068934. Print 2013.

Abstract

Chlamydia trachomatis is the most prevalent cause of bacterial sexually transmitted diseases and the leading cause of preventable blindness worldwide. Global control of Chlamydia will best be achieved with a vaccine, a primary target for which is the major outer membrane protein, MOMP, which comprises ~60% of the outer membrane protein mass of this bacterium. In the absence of experimental structural information on MOMP, three previously published topology models presumed a16-stranded barrel architecture. Here, we use the latest β-barrel prediction algorithms, previous 2D topology modeling results, and comparative modeling methodology to build a 3D model based on the 16-stranded, trimeric assumption. We find that while a 3D MOMP model captures many structural hallmarks of a trimeric 16-stranded β-barrel porin, and is consistent with most of the experimental evidence for MOMP, MOMP residues 320-334 cannot be modeled as β-strands that span the entire membrane, as is consistently observed in published 16-stranded β-barrel crystal structures. Given the ambiguous results for β-strand delineation found in this study, recent publications of membrane β-barrel structures breaking with the canonical rule for an even number of β-strands, findings of β-barrels with strand-exchanged oligomeric conformations, and alternate folds dependent upon the lifecycle of the bacterium, we suggest that although the MOMP porin structure incorporates canonical 16-stranded conformations, it may have novel oligomeric or dynamic structural changes accounting for the discrepancies observed.

摘要

沙眼衣原体是最常见的细菌性性传播疾病病原体,也是全球可预防盲症的主要原因。全球控制沙眼衣原体最好的方法是使用疫苗,疫苗的主要目标是主要外膜蛋白(MOMP),它约占该细菌外膜蛋白质量的 60%。由于缺乏 MOMP 的实验结构信息,之前发表的三个拓扑结构模型假设其具有 16 个跨膜β-桶结构。在这里,我们使用最新的β-桶预测算法、以前的 2D 拓扑建模结果和比较建模方法,基于 16 个跨膜、三聚体的假设构建了一个 3D 模型。我们发现,虽然 3D MOMP 模型捕捉到了三聚体 16 个跨膜β-桶孔蛋白的许多结构特征,并且与 MOMP 的大多数实验证据一致,但 MOMP 残基 320-334 不能作为跨越整个膜的β-链进行建模,这与发表的 16 个跨膜β-桶晶体结构中一致观察到的情况一致。鉴于本研究中β-链划分的结果不明确,最近关于膜β-桶结构打破偶数β-链规则的出版物、具有链交换寡聚构象的β-桶的发现,以及依赖于细菌生命周期的替代折叠,我们认为,尽管 MOMP 孔蛋白结构包含典型的 16 个跨膜构象,但它可能具有新颖的寡聚或动态结构变化,从而解释了观察到的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1058/3723809/9978ec8b2cb3/pone.0068934.g001.jpg

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