Kojima Seiji, Hayashi Kanako, Tochigi Saeko, Kusano Tomonobu, Kaneko Jun, Kamio Yoshiyuki
a Frontier Research Institute for Interdisciplinary Sciences , Tohoku University , Sendai , Japan.
b Graduate School of Life Sciences , Tohoku University , Sendai , Japan.
Biosci Biotechnol Biochem. 2016 Oct;80(10):1954-9. doi: 10.1080/09168451.2016.1194185. Epub 2016 Jun 7.
The major outer membrane protein Mep45 of Selenomonas ruminantium, an anaerobic Gram-negative bacterium, comprises two distinct domains: the N-terminal S-layer homologous (SLH) domain that protrudes into the periplasm and binds to peptidoglycan, and the remaining C-terminal transmembrane domain, whose function has been unknown. Here, we solubilized and purified Mep45 and characterized its function using proteoliposomes reconstituted with Mep45. We found that Mep45 forms a nonspecific diffusion channel via its C-terminal region. The channel was permeable to solutes smaller than a molecular weight of roughly 600, and the estimated pore radius was 0.58 nm. Truncation of the SLH domain did not affect the channel property. On the basis of the fact that Mep45 is the most abundant outer membrane protein in S. ruminantium, we conclude that Mep45 serves as a main pathway through which small solutes diffuse across the outer membrane of this bacterium.
反刍月形单胞菌是一种革兰氏阴性厌氧菌,其主要外膜蛋白Mep45由两个不同的结构域组成:N端的S层同源(SLH)结构域,该结构域伸入周质并与肽聚糖结合;以及其余的C端跨膜结构域,其功能尚不清楚。在这里,我们溶解并纯化了Mep45,并使用重组了Mep45的蛋白脂质体对其功能进行了表征。我们发现Mep45通过其C端区域形成了一个非特异性扩散通道。该通道对分子量小于约600的溶质具有通透性,估计的孔径半径为0.58纳米。SLH结构域的截短不影响通道特性。基于Mep45是反刍月形单胞菌中最丰富的外膜蛋白这一事实,我们得出结论,Mep45是小溶质扩散穿过该细菌外膜的主要途径。