Norledge B V, Trinkl S, Jaenicke R, Slingsby C
Birkbeck College, Department of Crystallography, London, United Kingdom.
Protein Sci. 1997 Aug;6(8):1612-20. doi: 10.1002/pro.5560060802.
beta-Crystallins are oligomeric eye lens proteins that are related to monomeric gamma-crystallins by domain swapping: like gamma-crystallins, they are comprised of two similar domains but they differ in having long sequence extensions. beta B2, a major component of beta-crystallin oligomers, self-associates to a homodimer in solution. In two crystal structures of native beta B2, the protein is a 222-symmetric tetramer of eight domains. It has previously been shown that a mutant of rat beta B2-crystallin, in which the bulk of the N- and C-terminal sequence extensions has been deleted, assembles into dimers and tetramers. Here we present the 3.0 A resolution X-ray structure of the tetramer, beta B2 delta NC1. The mutant tetramer has a very similar set of domain interactions to the native structure. However, the structures differ in the relative orientation of the two sets of four domains. The paired N- and C-terminal domain interface, which is at the heart of the dimer structure, is very similar to the native structure. However, the truncation of the C-terminal extension removes an important tryptophan residue, which prevents the extension from acting as a (non-covalent) linker, as it does in native beta B2. There is a knock-on structural effect that removes a contact between extension and covalent linker, and this appears to cause a small twist in the linker that is amplified into a 20 degrees rotation between sets of paired domains.
β-晶体蛋白是寡聚体晶状体蛋白,通过结构域交换与单体γ-晶体蛋白相关:与γ-晶体蛋白一样,它们由两个相似的结构域组成,但不同之处在于具有长序列延伸。βB2是β-晶体蛋白寡聚体的主要成分,在溶液中自缔合形成同型二聚体。在天然βB2的两个晶体结构中,该蛋白是一个由八个结构域组成的222对称四聚体。先前已表明,大鼠βB2-晶体蛋白的一个突变体,其中大部分N端和C端序列延伸已被删除,可组装成二聚体和四聚体。在此,我们展示了四聚体βB2δNC1的3.0埃分辨率X射线结构。突变体四聚体具有与天然结构非常相似的一组结构域相互作用。然而,这两种结构在两组四个结构域的相对取向上有所不同。作为二聚体结构核心的成对N端和C端结构域界面与天然结构非常相似。然而,C端延伸的截短去除了一个重要的色氨酸残基,这阻止了该延伸像在天然βB2中那样作为(非共价)连接体起作用。存在一种连锁结构效应,消除了延伸与共价连接体之间的接触,这似乎导致连接体发生小的扭曲,并放大为成对结构域组之间20度的旋转。