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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Kinetic stability and sequence/structure studies of urine-derived Bence-Jones proteins from multiple myeloma and light chain amyloidosis patients
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Kinetic stability and sequence/structure studies of urine-derived Bence-Jones proteins from multiple myeloma and light chain amyloidosis patients

机译:来自多发性骨髓瘤和轻链淀粉样蛋白患者的尿液衍生斜蛋黄蛋白的动力学稳定性及序列/结构研究

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摘要

Abstract It is now accepted that the ability of a protein to form amyloid fibrils could be associated both kinetic and thermodynamic protein folding parameters. A recent study from our laboratory using recombinant full-length (encompassing the variable and constant domain) immunoglobulin light chains found a strong kinetic control of the protein unfolding for these proteins. In this study, we are extending our analysis by using urine-derived Bence Jones proteins (BJPs) from five patients with light chain (AL) amyloidosis and four patients with multiple myeloma (MM). We observed lower stability in κ proteins compared to λ proteins (for both MM and AL proteins) in agreement with previous studies. The kinetic component of protein stability is not a universal feature of BJPs and the hysteresis observed during refolding reactions could be attributed to the inability of the protein to refold all domains. The most stable proteins exhibited 3-state unfolding transitions. While these proteins do not refold reversibly, partial refolding shows 2-state partial refolding transitions, suggesting that one of the domains (possibly the variable domain) does not refold completely. Sequences were aligned with their respective germlines and the location and nature of the mutations were analyzed. The location of the mutations were analyzed and compared with the stability and amyloidogenic properties for the proteins in this study, increasing our understanding of light chain unfolding and amyloidogenic potential. Graphical abstract Display Omitted Highlights ? Bence Jones (BJP) kappa light chain proteins are less stable than lambda BJPs. ? The most stable BJPs in our study present 3-state unfolding transitions. ? The location of the mutations and the BJPs' folding properties correlate. ? The BJPs kinetic control in protein folding could be attributed to proline residues.
机译:摘要现在接受蛋白质形成淀粉样蛋白原纤维的能力可以是动力学和热力学蛋白折叠参数的相关性。最近从我们的实验室使用重组全长(包括可变域和恒定域)免疫球蛋白轻链的研究发现对这些蛋白质的蛋白质的强烈动力学控制。在本研究中,我们通过使用来自轻链(Al)淀粉样蛋白症的五名患者和四名多发性骨髓瘤(mm)患者的尿液衍生的脚琼斯蛋白(BJP)来延长我们的分析。与以前的研究一致,我们观察到与λ蛋白(用于MM和Al蛋白)相比较低的κ蛋白稳定性。蛋白质稳定性的动力学组分不是BJP的普遍特征,并且在重折叠反应期间观察到的滞后可能归因于蛋白质不能降低所有结构域。最稳定的蛋白质表现出3状态展开过渡。虽然这些蛋白质不可逆转,部分重折叠显示2状态部分重折叠过渡,但这表明其中一个域(可能是可变域)不会完全重折叠。序列与它们各自的胚细胞对齐,分析突变的位置和性质。分析突变的位置并与该研究中蛋白质的稳定性和淀粉样蛋白化性能进行了比较,增加了我们对轻链展开和淀粉样蛋白潜力的理解。图形抽象显示省略了亮点? Benct Jones(BJP)Kappa轻链蛋白比λbpps稳定。还我们研究中最稳定的BJP存在于3状态展开过渡。还突变的位置和BJPS的折叠性能相关。还蛋白质折叠中的BJPS动力学控制可归因于脯氨酸残基。

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