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青蛙视紫红质两种晶体形式的投影结构。

Projection structure of frog rhodopsin in two crystal forms.

作者信息

Schertler G F, Hargrave P A

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1995 Dec 5;92(25):11578-82. doi: 10.1073/pnas.92.25.11578.

Abstract

Rhodopsin is the G protein-coupled receptor that upon light activation triggers the visual transduction cascade. Rod cell outer segment disc membranes were isolated from dark-adapted frog retinas and were extracted with Tween detergents to obtain two-dimensional rhodopsin crystals for electron crystallography. When Tween 80 was used, tubular structures with a p2 lattice (a = 32 A, b = 83 A, gamma = 91 degrees) were formed. The use of a Tween 80/Tween 20 mixture favored the formation of larger p22(1)2(1) lattices (a = 40 A, b = 146 A, gamma = 90 degrees). Micrographs from frozen hydrated frog rhodopsin crystals were processed, and projection structures to 7-A resolution for the p22(1)2(1) form and to 6-A resolution for the p2 form were calculated. The maps of frog rhodopsin in both crystal forms are very similar to the 9-A map obtained previously for bovine rhodopsin and show that the arrangement of the helices is the same. In a tentative topographic model, helices 4, 6, and 7 are nearly perpendicular to the plane of the membrane. In the higher-resolution projection maps of frog rhodopsin, helix 5 looks more tilted than it appeared previously. The quality of the two frog rhodopsin crystals suggests that they would be suitable to obtain a three-dimensional structure in which all helices would be resolved.

摘要

视紫红质是一种G蛋白偶联受体,在光激活后触发视觉转导级联反应。从暗适应的青蛙视网膜中分离出视杆细胞外段盘膜,并用吐温洗涤剂提取,以获得用于电子晶体学的二维视紫红质晶体。当使用吐温80时,形成了具有p2晶格(a = 32 Å,b = 83 Å,γ = 91°)的管状结构。使用吐温80/吐温20混合物有利于形成更大的p22(1)2(1)晶格(a = 40 Å,b = 146 Å,γ = 90°)。对冷冻水合青蛙视紫红质晶体的显微照片进行了处理,并计算了p22(1)2(1)形式的7 Å分辨率和p2形式的6 Å分辨率的投影结构。两种晶体形式的青蛙视紫红质图谱与先前获得的牛视紫红质9 Å图谱非常相似,表明螺旋的排列方式相同。在一个初步的拓扑模型中,螺旋4、6和7几乎垂直于膜平面。在青蛙视紫红质的高分辨率投影图谱中,螺旋5看起来比以前更倾斜。两种青蛙视紫红质晶体的质量表明,它们适合用于获得所有螺旋都能解析的三维结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae2d/40445/4cd621f47c24/pnas01503-0267-a.jpg

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