UCLA-DOE, Institute for Genomics and Proteomics, Los Angeles, California 90095-1570, USA.
Protein Sci. 2010 Oct;19(10):1978-84. doi: 10.1002/pro.471.
In previous work on truncated alpha crystallins (Laganowsky et al., Protein Sci 2010; 19:1031-1043), we determined crystal structures of the alpha crystallin core, a seven beta-stranded immunoglobulin-like domain, with its conserved C-terminal extension. These extensions swap into neighboring cores forming oligomeric assemblies. The extension is palindromic in sequence, binding in either of two directions. Here, we report the crystal structure of a truncated alphaA crystallin (AAC) from zebrafish (Danio rerio) revealing C-terminal extensions in a non three-dimensional (3D) domain swapped, "closed" state. The extension is quasi-palindromic, bound within its own zebrafish core domain, lying in the opposite direction to that of bovine AAC, which is bound within an adjacent core domain (Laganowsky et al., Protein Sci 2010; 19:1031-1043). Our findings establish that the C-terminal extension of alpha crystallin proteins can be either 3D domain swapped or non-3D domain swapped. This duality provides another molecular mechanism for alpha crystallin proteins to maintain the polydispersity that is crucial for eye lens transparency.
在之前关于截断的α晶状体蛋白的工作中(Laganowsky 等人,蛋白质科学 2010 年;19:1031-1043),我们确定了α晶状体蛋白核心的晶体结构,这是一个具有保守 C 末端延伸的七股β折叠免疫球蛋白样结构域。这些延伸在相邻核心之间交换形成寡聚体组装。该延伸在序列上是回文的,可以在两个方向之一结合。在这里,我们报告了来自斑马鱼(Danio rerio)的截断的αA 晶状体蛋白(AAC)的晶体结构,揭示了 C 末端延伸处于非三维(3D)结构域交换的“关闭”状态。该延伸几乎是回文的,与自身的斑马鱼核心结构域结合,其方向与结合在相邻核心结构域中的牛 AAC 相反(Laganowsky 等人,蛋白质科学 2010 年;19:1031-1043)。我们的发现证实了α晶状体蛋白的 C 末端延伸可以是 3D 结构域交换的,也可以是非 3D 结构域交换的。这种二元性为α晶状体蛋白提供了另一种分子机制,以维持对眼睛晶状体透明度至关重要的多分散性。