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钙-肉豆蔻酰开关的分子机制

Molecular mechanics of calcium-myristoyl switches.

作者信息

Ames J B, Ishima R, Tanaka T, Gordon J I, Stryer L, Ikura M

机构信息

Department of Neurobiology, Stanford University School of Medicine, California 94305, USA.

出版信息

Nature. 1997 Sep 11;389(6647):198-202. doi: 10.1038/38310.

Abstract

Many eukaryotic cellular and viral proteins have a covalently attached myristoyl group at the amino terminus. One such protein is recoverin, a calcium sensor in retinal rod cells, which controls the lifetime of photoexcited rhodopsin by inhibiting rhodopsin kinase. Recoverin has a relative molecular mass of 23,000 (M[r] 23K), and contains an amino-terminal myristoyl group (or related acyl group) and four EF hands. The binding of two Ca2+ ions to recoverin leads to its translocation from the cytosol to the disc membrane. In the Ca2+-free state, the myristoyl group is sequestered in a deep hydrophobic box, where it is clamped by multiple residues contributed by three of the EF hands. We have used nuclear magnetic resonance to show that Ca2+ induces the unclamping and extrusion of the myristoyl group, enabling it to interact with a lipid bilayer membrane. The transition is also accompanied by a 45-degree rotation of the amino-terminal domain relative to the carboxy-terminal domain, and many hydrophobic residues are exposed. The conservation of the myristoyl binding site and two swivels in recoverin homologues from yeast to humans indicates that calcium-myristoyl switches are ancient devices for controlling calcium-sensitive processes.

摘要

许多真核细胞蛋白和病毒蛋白在氨基末端都有一个共价连接的肉豆蔻酰基。视黄醛结合蛋白就是这样一种蛋白,它是视网膜视杆细胞中的一种钙传感器,通过抑制视紫红质激酶来控制光激发视紫红质的寿命。视黄醛结合蛋白的相对分子质量为23,000(Mr 23K),含有一个氨基末端肉豆蔻酰基(或相关酰基)和四个EF手结构。两个Ca2+离子与视黄醛结合蛋白结合会导致其从细胞质转移到盘膜。在无Ca2+状态下,肉豆蔻酰基被隔离在一个深疏水盒中,由三个EF手结构贡献的多个残基将其夹住。我们利用核磁共振表明,Ca2+会诱导肉豆蔻酰基的松开和挤出,使其能够与脂质双分子层膜相互作用。这种转变还伴随着氨基末端结构域相对于羧基末端结构域旋转45度,许多疏水残基暴露出来。从酵母到人类的视黄醛结合蛋白同源物中肉豆蔻酰结合位点和两个旋转结构的保守性表明,钙-肉豆蔻酰开关是控制钙敏感过程的古老机制。

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