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跨膜螺旋的倾斜角度由疏水错配决定。

Tilt angle of a trans-membrane helix is determined by hydrophobic mismatch.

作者信息

Park Sang Ho, Opella Stanley J

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0307, USA.

出版信息

J Mol Biol. 2005 Jul 8;350(2):310-8. doi: 10.1016/j.jmb.2005.05.004.

Abstract

In order to investigate the compensation mechanism of a trans-membrane helix in response to hydrophobic mismatch, the tilt and rotation angles of the trans-membrane helix of Vpu aligned in lipid bilayers of various thickness were determined using orientation-dependent frequencies obtained from solid-state NMR experiments of aligned samples. A tilt angle of 18 degrees was observed in 18:1-O-PC/DOPG (9:1) lipid bilayers, which have a hydrophobic thickness that approximately matches the hydrophobic length of the trans-membrane helix of Vpu. Upon decreasing the hydrophobic thickness of lipid bilayers, no significant change in rotation angle was observed. However, the tilt angle increased systematically with increasing positive mismatch to 27 degrees in 14:0-O-PC/DMPG (9:1), 35 degrees in 12:0-O-PC/DLPG (9:1), and 51 degrees in 10:0 PC/10:0 PG (9:1) lipid bilayers, indicating that the change in tilt angle of the trans-membrane helix is a principal compensation mechanism for hydrophobic mismatch. In addition, the distinctive kink in the middle of the helix observed in 18:1 bilayers disappears in thinner bilayers. Although the opposite of what might be expected, this finding suggests that a helix kink may also be a part of the hydrophobic matching mechanism for trans-membrane helices.

摘要

为了研究跨膜螺旋对疏水错配的补偿机制,利用从取向样品的固态核磁共振实验获得的取向依赖频率,测定了在不同厚度脂质双层中排列的Vpu跨膜螺旋的倾斜角和旋转角。在18:1 - O - PC/DOPG(9:1)脂质双层中观察到18度的倾斜角,其疏水厚度与Vpu跨膜螺旋的疏水长度大致匹配。当降低脂质双层的疏水厚度时,未观察到旋转角有显著变化。然而,随着正向错配增加,倾斜角在14:0 - O - PC/DMPG(9:1)脂质双层中系统地增加到27度,在12:0 - O - PC/DLPG(9:1)脂质双层中增加到35度,在10:0 PC/10:0 PG(9:1)脂质双层中增加到51度,这表明跨膜螺旋倾斜角的变化是疏水错配的主要补偿机制。此外,在18:1双层中观察到的螺旋中间独特的扭结在较薄的双层中消失。尽管与预期相反,但这一发现表明螺旋扭结也可能是跨膜螺旋疏水匹配机制的一部分。

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