Carter J M, Hutcheson A M, Quinlan R A
Department of Biochemistry, The University, Dundee, U.K.
Exp Eye Res. 1995 Feb;60(2):181-92. doi: 10.1016/s0014-4835(95)80009-3.
A rapid one-step purification procedure for CP49, an intermediate filament protein found in the lens, is described using reverse-phase HPLC. This protein is one of the major intermediate filament proteins of the lens fibre cells and is found in both the water insoluble fraction (WIF) and the water soluble fraction (WSF) of the lens. In order to better understand the physiological role of CP49 in lens transparency we have purified CP49 from both compartments and compared the in vitro assembly characteristics of both by electron microscopy and sedimentation assays. Our studies showed that CP49, when mixed with another lens intermediate filament protein, CP115, forms 10 nm intermediate filaments. Vimentin, another intermediate filament protein found in the lens, was unable to coassemble with CP115, thus demonstrating the specificity of the interaction of CP49 with CP115. CP49 isolated from either the WIF or the WSF formed 10-nm filaments with CP115 and indicated that CP49 from both these lens cell compartments had similar in vitro assembly characteristics. This also suggested that the post-translational modifications observed for CP49 from the different compartments was of little apparent consequence to filament formation. The inability to reconstitute beaded filaments from CP49 and CP115 suggested that other lens proteins may be needed in the reconstitution assay before these lens specific cytoskeletal elements could be repolymerised from their purified protein components. CP49 and CP115 were therefore assembled in the presence of alpha-crystallins and a beaded filament structure was observed as has been seen with type III intermediate filament proteins assembled with alpha-crystallins.
本文描述了一种使用反相高效液相色谱法快速一步纯化晶状体中发现的中间丝蛋白CP49的方法。该蛋白是晶状体纤维细胞的主要中间丝蛋白之一,存在于晶状体的水不溶性部分(WIF)和水溶性部分(WSF)中。为了更好地理解CP49在晶状体透明度中的生理作用,我们从这两个部分纯化了CP49,并通过电子显微镜和沉降分析比较了两者的体外组装特性。我们的研究表明,CP49与另一种晶状体中间丝蛋白CP115混合时,会形成10纳米的中间丝。波形蛋白是晶状体中发现的另一种中间丝蛋白,它不能与CP115共同组装,从而证明了CP49与CP115相互作用的特异性。从WIF或WSF中分离出的CP49都能与CP115形成10纳米的细丝,这表明来自这两个晶状体细胞部分的CP49具有相似的体外组装特性。这也表明,从不同部分观察到的CP49的翻译后修饰对细丝形成几乎没有明显影响。无法从CP49和CP115中重构珠状细丝表明,在这些晶状体特异性细胞骨架元件能够从其纯化的蛋白质成分中重新聚合之前,重构分析可能需要其他晶状体蛋白。因此,CP49和CP115在α-晶状体蛋白存在的情况下进行组装,观察到了珠状细丝结构,这与III型中间丝蛋白与α-晶状体蛋白组装时的情况相同。