Illawarra Health and Medical Research Institute and School of Biological Sciences, University of Wollongong, NSW 2522, Australia.
Biochem J. 2012 Dec 15;448(3):343-52. doi: 10.1042/BJ20121187.
Stress conditions can destabilize proteins, promoting them to unfold and adopt intermediately folded states. Partially folded protein intermediates are unstable and prone to aggregation down off-folding pathways leading to the formation of either amorphous or amyloid fibril aggregates. The sHsp (small heat-shock protein) αB-crystallin acts as a molecular chaperone to prevent both amorphous and fibrillar protein aggregation; however, the precise molecular mechanisms behind its chaperone action are incompletely understood. To investigate whether the chaperone activity of αB-crystallin is dependent upon the form of aggregation (amorphous compared with fibrillar), bovine α-lactalbumin was developed as a model target protein that could be induced to aggregate down either off-folding pathway using comparable buffer conditions. Thus when α-lactalbumin was reduced it aggregated amorphously, whereas a reduced and carboxymethylated form aggregated to form amyloid fibrils. Using this model, αB-crystallin was shown to be a more efficient chaperone against amorphously aggregating α-lactalbumin than when it aggregated to form fibrils. Moreover, αB-crystallin forms high molecular mass complexes with α-lactalbumin to prevent its amorphous aggregation, but prevents fibril formation via weak transient interactions. Thus, the conformational stability of the protein intermediate, which is a precursor to aggregation, plays a critical role in modulating the chaperone mechanism of αB-crystallin.
应激条件会使蛋白质失稳,促进其展开并采用中间折叠状态。部分折叠的蛋白质中间体不稳定,容易沿着非折叠途径聚集,导致形成无定形或淀粉样纤维聚集物。sHsp(小分子热休克蛋白)αB-晶状体蛋白作为分子伴侣,防止无定形和纤维状蛋白质聚集;然而,其伴侣作用的确切分子机制尚不完全清楚。为了研究αB-晶状体蛋白的伴侣活性是否依赖于聚集的形式(与纤维状相比为无定形),牛α-乳白蛋白被开发为一种模型靶蛋白,在使用可比缓冲条件的情况下,可以通过两种非折叠途径诱导其聚集。因此,当α-乳白蛋白被还原时,它会无定形聚集,而还原和羧甲基化的形式则会聚集形成淀粉样纤维。使用这种模型,αB-晶状体蛋白对无定形聚集的α-乳白蛋白的伴侣活性比形成纤维时更高。此外,αB-晶状体蛋白与α-乳白蛋白形成高分子质量复合物,以防止其无定形聚集,但通过弱瞬时相互作用防止纤维形成。因此,蛋白质中间体的构象稳定性,作为聚集的前体,在调节αB-晶状体蛋白的伴侣机制方面起着关键作用。