Department of Microbiology and Immunology, University of Miami Miller School of Medicine, Miami, FL 33101, USA.
J Bacteriol. 2011 May;193(9):2276-89. doi: 10.1128/JB.01137-10. Epub 2011 Feb 25.
YscD is an essential component of the plasmid pCD1-encoded type III secretion system (T3SS) of Yersinia pestis. YscD has a single transmembrane (TM) domain that connects a small N-terminal cytoplasmic region (residues 1 to 121) to a larger periplasmic region (residues 143 to 419). Deletion analyses established that both the N-terminal cytoplasmic region and the C-terminal periplasmic region are required for YscD function. Smaller targeted deletions demonstrated that a predicted cytoplasmic forkhead-associated (FHA) domain is also required to assemble a functional T3SS; in contrast, a predicted periplasmic phospholipid binding (BON) domain and a putative periplasmic "ring-building motif" domain of YscD could be deleted with no significant effect on the T3S process. Although deletion of the putative "ring-building motif" domain did not disrupt T3S activity per se, the calcium-dependent regulation of the T3S apparatus was affected. The extreme C-terminal region of YscD (residues 354 to 419) was essential for secretion activity and had a strong dominant-negative effect on the T3S process when exported to the periplasm of the wild-type parent strain. Coimmunoprecipitation studies demonstrated that this region of YscD mediates the interaction of YscD with the outer membrane YscC secretin complex. Finally, replacement of the YscD TM domain with a TM domain of dissimilar sequence had no effect on the T3S process, indicating that the TM domain has no sequence-specific function in the assembly or function of the T3SS.
YscD 是鼠疫耶尔森氏菌 pCD1 编码的 III 型分泌系统 (T3SS) 的必需组成部分。YscD 有一个单一的跨膜 (TM) 结构域,连接一个小的细胞质 N 端区域(残基 1 至 121)和一个更大的周质区域(残基 143 至 419)。删除分析确定,N 端细胞质区域和 C 端周质区域都需要 YscD 功能。较小的靶向删除表明,预测的细胞质叉头相关 (FHA) 结构域也是组装功能性 T3SS 所必需的;相比之下,预测的周质磷脂结合 (BON) 结构域和 YscD 的一个假定周质“环构建基序”结构域可以被删除,而对 T3S 过程没有显著影响。尽管预测的“环构建基序”结构域的缺失本身不会破坏 T3S 活性,但 T3S 装置的钙依赖性调节受到影响。YscD 的极端 C 端区域(残基 354 至 419)对于分泌活性是必需的,并且当被运送到野生型亲本菌株的周质中时,对 T3S 过程具有强烈的显性负效应。共免疫沉淀研究表明,YscD 的这一区域介导了 YscD 与外膜 YscC 分泌复合物的相互作用。最后,用不同序列的 TM 结构域替代 YscD 的 TM 结构域对 T3S 过程没有影响,这表明 TM 结构域在 T3SS 的组装或功能中没有序列特异性功能。