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有证据表明,粘球菌的一种伴护-usher 样途径在孢子外壳形成中发挥作用。

Evidence that a chaperone-usher-like pathway of Myxococcus xanthus functions in spore coat formation.

机构信息

Department of Biochemistry, School of Medicine, Southeast University, Nanjing, Jiangsu 210009, PR China.

Key laboratory of Ministry of Education for Developmental Genes and Human Diseases, Southeast University, Nanjing, Jiangsu 210009, PR China.

出版信息

Microbiology (Reading). 2011 Jul;157(Pt 7):1886-1896. doi: 10.1099/mic.0.047134-0. Epub 2011 Mar 31.

Abstract

Many bacteria use the chaperone-usher (CU) secretion pathway to assemble on their surfaces typical or atypical fimbrial organelles. Four consecutive genes of Myxococcus xanthus DK1622, MXAN3885-3882, were predicted to constitute an operon encoding a CU-like system involved in the assembly of the spore coat; however, experimental evidence supporting this hypothesis was lacking. In this study, co-transcription of MXAN3885-3883 was verified, and we found that this operon was expressed 12-15 h after initiation of M. xanthus development under conditions of stringent starvation. The MXAN3885 protein, which is highly homologous to, but expressed earlier than, the spore coat protein U of another M. xanthus strain, DZF1, was present mainly on the outer surface of myxospores. Inactivation of MXAN3883, encoding a putative outer membrane usher, inhibited assembly of MXAN3885 protein on spore surfaces and caused certain morphological alterations in the spore coat. Hence, the CU-like pathway in M. xanthus indeed functions in spore coat biogenesis. Based on chaperone amino acid sequence comparisons, our analysis suggests that the structural basis of the M. xanthus CU-like pathway for spore coat assembly may be different from that of most surface structures assembled by classical CU systems.

摘要

许多细菌利用伴侣蛋白- usher (CU) 分泌途径在其表面组装典型或非典型菌毛器官。黄杆菌属 DK1622 的四个连续基因 MXAN3885-3882,预测构成一个操纵子,编码一个 CU 样系统,参与孢子衣的组装;然而,支持这一假设的实验证据是缺乏的。在这项研究中,验证了 MXAN3885-3883 的共转录,我们发现该操纵子在严格饥饿条件下黄杆菌属发育开始后 12-15 小时表达。MXAN3885 蛋白与另一种黄杆菌属菌株 DZF1 的孢子衣蛋白 U 高度同源,但表达时间早于 U,主要存在于粘孢子的外表面。编码假定外膜 usher 的 MXAN3883 的失活抑制了 MXAN3885 蛋白在孢子表面的组装,并导致孢子衣的某些形态改变。因此,黄杆菌属中的 CU 样途径确实在孢子衣生物发生中起作用。基于伴侣蛋白氨基酸序列比较,我们的分析表明,黄杆菌属 CU 样途径用于孢子衣组装的结构基础可能与大多数由经典 CU 系统组装的表面结构不同。

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