首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structure and function in rhodopsin: covalent crosslinking of the rhodopsin (metarhodopsin II)-transducin complex--the rhodopsin cytoplasmic face links to the transducin alpha subunit.
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Structure and function in rhodopsin: covalent crosslinking of the rhodopsin (metarhodopsin II)-transducin complex--the rhodopsin cytoplasmic face links to the transducin alpha subunit.

机译:视紫红质的结构和功能:视紫红质(甲视紫红质II)-转导蛋白复合物的共价交联-视紫红质的胞质面与转导蛋白α亚基相连。

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摘要

We prepared rhodopsin mutants that contained a single reactive cysteine residue per rhodopsin molecule at position 65, 140, 240, or 316 on the cytoplasmic face. A carbene-generating photoactivatable group was linked by a disulfide bond to the cysteine sulfhydryl group of each of the rhodopsin mutants. The resulting derivative was then light-activated at lambda > 495 nm to form the metarhodopsin II intermediate, which bound transducin. Subsequent photoactivation (355 nm) of the carbene-generating group resulted in crosslinking of the rhodopsin mutant carrying a cysteine residue at position 240 to transducin. This crosslinking was determined to be specifically with the alpha subunit of transducin. An alternative reaction observed during photolysis of the rhodopsin mutants was intramolecular insertion of the carbene into rhodopsin.
机译:我们制备了视紫红质突变体,每个视紫红质分子在细胞质面上的位置65、140、240或316都含有一个反应性半胱氨酸残基。产生卡宾的可光活化基团通过二硫键与每个视紫红质突变体的半胱氨酸巯基相连。然后将所得衍生物在λ> 495 nm处光激活,以形成结合视转导素的金属视紫红质II中间体。卡宾产生基团的随后光活化(355nm)导致视紫红质突变体在240位带有半胱氨酸残基的视紫红质突变体交联至转导蛋白。确定该交联特别是与转导蛋白的α亚基。在视紫红质突变体的光解过程中观察到的另一种反应是将卡宾分子内插入视紫红质中。

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