Ramamurthi Kumaran S, Clapham Katie Rose, Losick Richard
Department of Molecular and Cellular Biology, Harvard University, The Biological Laboratories, 16 Divinity Ave., Cambridge, MA 02138, USA.
Mol Microbiol. 2006 Dec;62(6):1547-57. doi: 10.1111/j.1365-2958.2006.05468.x.
Spore formation in Bacillus subtilis involves the formation of a thick, proteinaceous shell or coat that is assembled around a specialized membrane known as the outer forespore membrane. Here we present evidence that the assembling coat is tethered to the outer forespore membrane by a 26-amino-acid peptide called SpoVM, which is believed to form an amphipathic helix. We show that proper localization of SpoVM is dependent on SpolVA, a morphogenetic protein that forms the basement layer of the spore coat, and conversely, that proper localization of SpoIVA is dependent on SpoVM. Genetic, biochemical and cytological evidence indicates that this mutual dependence is mediated in part by contact between an amino acid side-chain located near the extreme C-terminus of SpoIVA and an amino acid side-chain on the hydrophilic face of the SpoVM helix. Evidence is also presented that SpoVM adheres to the outer forespore membrane via hydrophobic, amino acid side-chains on the hydrophobic face of the helix. The results suggest that the SpoVM helix is oriented parallel to the membrane with the hydrophobic face buried in the lipid bilayer.
枯草芽孢杆菌中的孢子形成涉及形成一层厚厚的蛋白质外壳,该外壳围绕着一种称为前芽孢外膜的特殊膜组装而成。在此,我们提供证据表明,正在组装的外壳通过一种名为SpoVM的26个氨基酸的肽与前芽孢外膜相连,据信该肽形成两亲性螺旋。我们表明,SpoVM的正确定位取决于SpoIVA,一种形成孢子外壳基层的形态发生蛋白,相反,SpoIVA的正确定位取决于SpoVM。遗传、生化和细胞学证据表明,这种相互依赖性部分是由位于SpoIVA极端C末端附近的氨基酸侧链与SpoVM螺旋亲水面上的氨基酸侧链之间的接触介导的。还提供证据表明,SpoVM通过螺旋疏水面上的疏水氨基酸侧链粘附在前芽孢外膜上。结果表明,SpoVM螺旋与膜平行排列,疏水面向内埋入脂质双层中。