Key Laboratory of Microbiological Engineering of Agricultural Environment of Ministry of Agriculture, Department of Microbiology, College of Life Sciences, Nanjing Agricultural University, Nanjing, China.
Shanghai Institute of Applied Physics, Chinese Academy of Sciences, 201204 Shanghai, China.
Int J Biol Macromol. 2018 Dec;120(Pt B):1474-1479. doi: 10.1016/j.ijbiomac.2018.09.166. Epub 2018 Sep 26.
Type VI secretion system (T6SS), as a macromolecular system, is commonly found in Gram-negative bacteria and responsible for exporting effectors. T6SS consists of 13 core proteins. TssL is a component of the membrane complex and plays a pivotal role in T6SS. Here, we report the crystal structure of the C-terminal periplasmic domain of TssL (TssL) from Serratia marcescens FS14. The TssL (310-503) contain a five-stranded anti-parallel β-sheet flanked by five α-helices and a short N-terminal helix. Structural comparisons revealed that it belongs to the OmpA-like family with a remarked difference in the conformation of the loop3-5. In OmpA-like family, the corresponding loop is located close to loop2-3, forming a cavity with a small opening together with the longest α5, whereas in TssL, loop3-5 flipped away from this cavity region. In addition, significant differences in the peptidoglycan (PG) binding site suggest that big conformational change must take place to accomplish the PG binding for TssL. Furthermore, a long flexible loop between helices α1 and α2 is unique in TssL. TssL would have a big conformational change during the delivery of the Hcp needle and effectors. So we speculate that the long flexible endows TssL the adaptation of its evolutionary new function.
VI 型分泌系统(T6SS)是一种大分子系统,通常存在于革兰氏阴性菌中,负责输出效应器。T6SS 由 13 个核心蛋白组成。TssL 是膜复合物的一个组成部分,在 T6SS 中起着关键作用。在这里,我们报道了来自粘质沙雷氏菌 FS14 的 TssL(TssL)的 C 端周质域的晶体结构。TssL(310-503)包含一个由五个反平行 β-折叠组成的五链,两侧是五个 α-螺旋和一个短的 N 端螺旋。结构比较表明,它属于 OmpA 样家族,在 loop3-5 的构象上有明显的差异。在 OmpA 样家族中,相应的 loop 位于 loop2-3 附近,与最长的 α5 一起形成一个带有小开口的空腔,而在 TssL 中,loop3-5 从这个空腔区域翻转。此外,肽聚糖(PG)结合位点的显著差异表明,TssL 必须发生大的构象变化才能完成 PG 结合。此外,在α1 和α2 螺旋之间有一个长的柔性环,这在 TssL 中是独特的。在 Hcp 针和效应器的输送过程中,TssL 会发生大的构象变化。因此,我们推测长的柔性赋予了 TssL 适应其进化的新功能。