首页> 外文期刊>Journal of the American Chemical Society >7,8-Dihydro Retinals Outperform the Native Retinals in Conferring Photosensitivity to Visual Opsin
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7,8-Dihydro Retinals Outperform the Native Retinals in Conferring Photosensitivity to Visual Opsin

机译:7,8-二氢视网膜在赋予视蛋白视敏性方面优于天然视网膜

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摘要

The visual pigment rhodopsin presents an astonishing photochemical performance. It exhibits an unprecedented quantum yield (0.67) in a highly defined and ultrafast photoisomerization process. This triggers the conformational changes leading to the active state Meta II of this G protein-coupled receptor. The responsible ligand, retinal, is covalently bound to Lys-296 of the protein in a protonated Schiff base. The resulting positive charge delocalization over the terminal part of the polyene chain of retinal creates a conjugation defect that upon photoexcitation moves to the opposite end of the polyene. Shortening the polyene as in 5,6-dihydro- or 7,8-dihydro analogues might facilitate photoisomerization of a 9-Z and an 11-Z bond. Here we describe pigment analogues generated with bovine opsin and 11-Z 7,8-dihydro retinal or 9-Z 7,8-dihydro retinal. Both isomers readily generate photosensitive pigments that differ remarkably in spectral properties from the native pigments. In addition, in spite of the more flexible 7,8 single bond, both analogue pigments exhibit strikingly efficient photoisomerization while largely maintaining the activity toward the G-protein. These results bear upon the activation of ligand-gated signal transducers such as G protein-coupled receptors.
机译:视觉色素视紫红质具有惊人的光化学性能。在高度定义的超快光异构化过程中,它展现出前所未有的量子产率(0.67)。这触发了构象变化,导致该G蛋白偶联受体的活性状态Meta II。负责的配体,视网膜,在质子化席夫碱中共价结合到蛋白质的Lys-296。在视网膜的多烯链末端上产生的正电荷离域产生共轭缺陷,该共轭缺陷在光激发时移动到多烯的另一端。如5,6-二氢-或7,8-二氢类似物中的缩短多烯可能会促进9-Z和11-Z键的光异构化。在这里,我们描述了由牛视蛋白和11-Z 7,8-二氢视网膜或9-Z 7,8-二氢视网膜产生的色素类似物。两种异构体均容易产生光敏颜料,其光谱性质与天然颜料不同。另外,尽管具有7,8单键更灵活,但两种类似颜料均表现出惊人的有效光致异构化作用,同时很大程度上保持了对G蛋白的活性。这些结果取决于诸如G蛋白偶联受体的配体门控信号转导的激活。

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