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首页> 外文期刊>Biochemical and Biophysical Research Communications >Structural studies on the individual domains of human γS-crystallin and its G57W mutant unfolds mechanistic insights into childhood cataracts
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Structural studies on the individual domains of human γS-crystallin and its G57W mutant unfolds mechanistic insights into childhood cataracts

机译:对人类γ-晶体的个体结构域及其G57W突变体的结构研究展开了童年白内障的机械洞察力

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Inter-domain interactions tune the exceptional stability of human γS-crystallin (γS-WT) in the eye lens, which lasts a lifetime with no protein turnover. Our recent NMR studies revealed the key role of G57W mutation in γS-WT, as the familial determinate of childhood cataracts. As the unusually exposed W57 is near the inter-domain interface, a recurring theme of this study is the upsetting of inter-domain contacts exposing hydrophobic patches, which may initiate aggregation at crystallin concentrations not so surprising in the eye lens. In this endeavour, to untangle the mechanistic pathways triggering aggregation in the cataract variant γS-G57W, we undertook high-resolution structural characterization of isolated domains vis-a-vis full length γS-crystallin. Here we report for the first time, thermodynamic and kinetic determinants of structural stability with their eccentric shifts under pathological stress employing sophisticated spectroscopy techniques. We propose that domain interface acts as an intrinsic stabilizer for the otherwise floppy N-terminal domain in γS-G57W than in γS-WT where it serves an extrinsic role. Our results present a residue resolved quantitative analysis for differential domain stabilities from non-linear temperature coefficients of 1HN chemical shifts using solution NMR spectroscopy. Consistent with the Ca2+-binding episode that lasted poorly for human lens crystallins, our results show that disease mutants attenuate it further and completely silence it in extreme cases. Overall, our study provides a compelling evidence for the diverse structural evolution of lens crystallins elucidating molecular details to apprehend lens opacification and suggests the scope of therapeutics in reducing the global trauma of cataracts
机译:域间相互作用调节眼镜中人γ-晶体(γ-WT)的卓越稳定性,持续一生没有蛋白质周转。我们最近的NMR研究表明,G57W突变在γ-WT中的关键作用,作为童年白内障的家族。由于异常暴露的W57在域间界面附近,该研究的重复主题是暴露疏水贴片的域间触点的镦粗,这可以在眼睛透镜中不那么令人惊讶地引发聚集。在这种努力中,为了解开对白内障变体γ-G57W中的机械途径引发聚集的机械途径,我们进行了高分辨率的分离结构域Vis-Vis全长γ-结晶素的结构表征。在这里,我们在使用复杂的光谱技术的病理应力下,首次报告结构稳定性的结构稳定性的结构稳定性,其偏心移位。我们提出了域界面作为γ-G57W中的其他软盘N末端域中的固有稳定器,而不是其在其所在外在作用的γ-WT。我们的结果在使用溶液NMR光谱的非线性温度系数来自1HN化学位移的非线性温度系数的差分结构域稳定性的残留量分辨定量分析。我们的结果表明,与人晶状体晶体晶体晶体晶体晶体持续不良的CA2 + - 桥接集合,表明疾病突变体进一步衰减并将其完全沉默于极端情况下。总体而言,我们的研究为阐明了分子细节的镜片晶体的多样化结构演变提供了令人信服的证据,以吸引透镜透明化,并提出了减少白内障全球创伤的治疗范围

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