Kusunoki Hideki, MacDonald Ruby I, Mondragón Alfonso
Department of Biochemistry, Molecular Biology, and Cell Biology, Northwestern University, 2205 Tech Drive, Evanston, IL 60208 USA.
Structure. 2004 Apr;12(4):645-56. doi: 10.1016/j.str.2004.02.022.
Erythroid spectrin, a major component of the cytoskeletal network of the red cell which contributes to both the stability and the elasticity of the red cell membrane, is composed of two subunits, alpha and beta, each formed by 16-20 tandem repeats. The properties of the repeats and their relative arrangement are thought to be key determinants of spectrin flexibility. Here we report a 2.4 A resolution crystal structure of human erythroid beta-spectrin repeats 8 and 9. This two-repeat fragment is unusual as it exhibits low stability of folding and one of its repeats lacks two tryptophans highly conserved among spectrin repeats. Two key factors responsible for the lower stability and, possibly, its flexibility, are revealed by the structure. A third novel feature of the structure is the relative orientation of the two repeats, which increases the range of possible conformations and provides new insights into atomic models of spectrin flexibility.
红细胞血影蛋白是红细胞细胞骨架网络的主要成分,对红细胞膜的稳定性和弹性均有贡献,它由α和β两个亚基组成,每个亚基由16 - 20个串联重复序列构成。这些重复序列的特性及其相对排列方式被认为是血影蛋白柔韧性的关键决定因素。在此,我们报道了人红细胞β - 血影蛋白重复序列8和9的分辨率为2.4 Å的晶体结构。这个包含两个重复序列的片段不同寻常,因为它折叠稳定性低,且其中一个重复序列缺少血影蛋白重复序列中高度保守的两个色氨酸。该结构揭示了导致其较低稳定性以及可能的柔韧性的两个关键因素。该结构的第三个新特征是两个重复序列的相对取向,这增加了可能构象的范围,并为血影蛋白柔韧性的原子模型提供了新的见解。