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结合但未能激活转导蛋白的视紫红质突变体。

Rhodopsin mutants that bind but fail to activate transducin.

作者信息

Franke R R, König B, Sakmar T P, Khorana H G, Hofmann K P

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Science. 1990 Oct 5;250(4977):123-5. doi: 10.1126/science.2218504.

Abstract

Rhodopsin is a member of a family of receptors that contain seven transmembrane helices and are coupled to G proteins. The nature of the interactions between rhodopsin mutants and the G protein, transduction (Gt), was investigated by flash photolysis in order to monitor directly Gt binding and dissociation. Three mutant opsins with alterations in their cytoplasmic loops bound 11-cis-retinal to yield pigments with native rhodopsin absorption spectra, but they failed to stimulate the guanosine triphosphatase activity of Gt. The opsin mutations included reversal of a charged pair conserved in all G protein-coupled receptors at the cytoplasmic border of the third transmembrane helix (mutant CD1), replacement of 13 amino acids in the second cytoplasmic loop (mutant CD2), and deletion of 13 amino acids from the third cytoplasmic loop (mutant EF1). Whereas mutant CD1 failed to bind Gt, mutants CD2 and EF1 showed normal Gt binding but failed to release Gt in the presence of guanosine triphosphate. Therefore, it appears that at least the second and third cytoplasmic loops of rhodopsin are required for activation of bound Gt.

摘要

视紫红质是一类受体家族的成员,这类受体含有七个跨膜螺旋并与G蛋白偶联。为了直接监测Gt的结合和解离,通过闪光光解研究了视紫红质突变体与G蛋白转导素(Gt)之间相互作用的性质。三个胞质环发生改变的突变视蛋白结合了11-顺式视黄醛,产生了具有天然视紫红质吸收光谱的色素,但它们未能刺激Gt的鸟苷三磷酸酶活性。视蛋白突变包括在第三个跨膜螺旋的胞质边界处所有G蛋白偶联受体中保守的一对带电氨基酸的反转(突变体CD1)、第二个胞质环中13个氨基酸的替换(突变体CD2)以及第三个胞质环中13个氨基酸的缺失(突变体EF1)。突变体CD1未能结合Gt,而突变体CD2和EF1显示出正常的Gt结合,但在存在鸟苷三磷酸的情况下未能释放Gt。因此,似乎视紫红质至少第二个和第三个胞质环是激活结合的Gt所必需的。

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