Department of Biochemistry and Biophysics, Arrhenius Laboratories for Natural Sciences, Stockholm University, 10691 Stockholm, Sweden.
J Proteome Res. 2011 Aug 5;10(8):3617-31. doi: 10.1021/pr200268r. Epub 2011 Jun 27.
Cyanobacteria are unique eubacteria with an organized subcellular compartmentalization of highly differentiated internal thylakoid membranes (TM), in addition to the outer and plasma membranes (PM). This leads to a complicated system for transport and sorting of proteins into the different membranes and compartments. By shotgun and gel-based proteomics of plasma and thylakoid membranes from the cyanobacterium Synechocystis sp. PCC 6803, a large number of membrane proteins were identified. Proteins localized uniquely in each membrane were used as a platform describing a model for cellular membrane organization and protein intermembrane sorting and were analyzed by multivariate sequence analyses to trace potential differences in sequence properties important for insertion and sorting to the correct membrane. Sequence traits in the C-terminal region, but not in the N-terminal nor in any individual transmembrane segments, were discriminatory between the TM and PM classes. The results are consistent with a contact zone between plasma and thylakoid membranes, which may contain short-lived "hemifusion" protein traffic connection assemblies. Insertion of both integral and peripheral membrane proteins is suggested to occur through common translocons in these subdomains, followed by a potential translation arrest and structure-based sorting into the correct membrane compartment.
蓝藻是具有独特组织的真细菌,其内部类囊体膜(TM)高度分化,此外还有外膜和质膜(PM)。这导致了蛋白质进入不同膜和隔室的运输和分拣的复杂系统。通过对蓝藻集胞藻 PCC 6803 的质膜和类囊体膜进行鸟枪法和凝胶基蛋白质组学分析,鉴定出了大量的膜蛋白。将唯一定位于每种膜的蛋白质用作描述细胞膜组织和蛋白质跨膜分拣模型的平台,并通过多元序列分析进行分析,以追踪对正确膜的插入和分拣很重要的潜在序列特性差异。C 末端区域的序列特征,但不是 N 末端或任何单个跨膜片段,可区分 TM 和 PM 类。结果与质膜和类囊体膜之间的接触区一致,该接触区可能包含短暂存在的“半融合”蛋白运输连接组装体。建议通过这些亚域中的共同转运体插入整合膜和外周膜蛋白,然后可能会发生翻译暂停,并基于结构将其分拣到正确的膜隔室中。