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通过15N-固态核磁共振光谱法测定膜相关Bcl-X(L)中的螺旋取向

Helix orientations in membrane-associated Bcl-X(L) determined by 15N-solid-state NMR spectroscopy.

作者信息

Aisenbrey Christopher, Sudheendra U S, Ridley Helen, Bertani Philippe, Marquette Arnaud, Nedelkina Svetlana, Lakey Jeremy H, Bechinger Burkhard

机构信息

Institut de Chimie de Strasbourg, Université Louis Pasteur/CNRS LC3-UMR 7177, 4 rue Blaise Pascal, 67070 Strasbourg, France.

出版信息

Eur Biophys J. 2007 Dec;37(1):71-80. doi: 10.1007/s00249-007-0165-z. Epub 2007 May 10.

Abstract

Controlled cell death is fundamental to tissue hemostasis and apoptosis malfunctions can lead to a wide range of diseases. Bcl-x(L) is an anti-apoptotic protein the function of which is linked to its reversible interaction with mitochondrial outer membranes. Its interfacial and intermittent bilayer association makes prediction of its bound structure difficult without using methods able to extract data from dynamic systems. Here we investigate Bcl-x(L) associated with oriented lipid bilayers at physiological pH using solid-state NMR spectroscopy. The data are consistent with a C-terminal transmembrane anchoring sequence and an average alignment of the remaining helices, i.e. including helices 5 and 6, approximately parallel to the membrane surface. Data from several biophysical approaches confirm that after removal of the C-terminus from Bcl-x(L) its membrane interactions are weak. In the presence of membranes Bcl-x(L) can still interact with a Bak BH3 domain peptide suggesting a model where the hydrophobic C-terminus of the protein unfolds and inserts into the membrane. During this conformational change the Bcl-x(L) hydrophobic binding pocket becomes accessible for protein-protein interactions whilst the structure of the N-terminal region remains intact.

摘要

可控性细胞死亡对于组织止血至关重要,而细胞凋亡功能异常会导致多种疾病。Bcl-x(L)是一种抗凋亡蛋白,其功能与其与线粒体外膜的可逆相互作用有关。由于其界面和间歇性双层结合,在不使用能够从动态系统中提取数据的方法的情况下,很难预测其结合结构。在此,我们使用固态核磁共振光谱研究了在生理pH值下与定向脂质双层相关的Bcl-x(L)。数据与C端跨膜锚定序列以及其余螺旋(即包括螺旋5和6)的平均排列一致,这些螺旋大致平行于膜表面。来自多种生物物理方法的数据证实,从Bcl-x(L)中去除C端后,其与膜的相互作用较弱。在有膜存在的情况下,Bcl-x(L)仍可与Bak BH3结构域肽相互作用,这表明存在一种模型,即该蛋白的疏水C端展开并插入膜中。在这种构象变化过程中,Bcl-x(L)的疏水结合口袋可用于蛋白质-蛋白质相互作用,而N端区域的结构保持完整。

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