Pliotas Christos, Dahl A Caroline E, Rasmussen Tim, Mahendran Kozhinjampara R, Smith Terry K, Marius Phedra, Gault Joseph, Banda Thandiwe, Rasmussen Akiko, Miller Samantha, Robinson Carol V, Bayley Hagan, Sansom Mark S P, Booth Ian R, Naismith James H
Biomedical Sciences Research Complex, University of St. Andrews, St. Andrews, UK.
Department of Biochemistry, University of Oxford, Oxford, UK.
Nat Struct Mol Biol. 2015 Dec;22(12):991-8. doi: 10.1038/nsmb.3120. Epub 2015 Nov 9.
The ability of proteins to sense membrane tension is pervasive in biology. A higher-resolution structure of the Escherichia coli small-conductance mechanosensitive channel MscS identifies alkyl chains inside pockets formed by the transmembrane helices (TMs). Purified MscS contains E. coli lipids, and fluorescence quenching demonstrates that phospholipid acyl chains exchange between bilayer and TM pockets. Molecular dynamics and biophysical analyses show that the volume of the pockets and thus the number of lipid acyl chains within them decreases upon channel opening. Phospholipids with one acyl chain per head group (lysolipids) displace normal phospholipids (with two acyl chains) from MscS pockets and trigger channel opening. We propose that the extent of acyl-chain interdigitation in these pockets determines the conformation of MscS. When interdigitation is perturbed by increased membrane tension or by lysolipids, the closed state becomes unstable, and the channel gates.
蛋白质感知膜张力的能力在生物学中普遍存在。大肠杆菌小电导机械敏感通道MscS的高分辨率结构显示,跨膜螺旋(TMs)形成的口袋内部存在烷基链。纯化的MscS含有大肠杆菌脂质,荧光猝灭表明磷脂酰基链在双层膜和TM口袋之间交换。分子动力学和生物物理分析表明,通道开放时,口袋的体积以及其中脂质酰基链的数量会减少。每个头部基团带有一条酰基链的磷脂(溶血磷脂)会取代MscS口袋中的正常磷脂(带有两条酰基链)并触发通道开放。我们提出,这些口袋中酰基链的叉指程度决定了MscS的构象。当叉指因膜张力增加或溶血磷脂而受到干扰时,关闭状态变得不稳定,通道打开。