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EPM1患者体内发生的人stefin B(胱抑素B)两种突变体的稳定性及淀粉样纤维形成的体外研究

In vitro study of stability and amyloid-fibril formation of two mutants of human stefin B (cystatin B) occurring in patients with EPM1.

作者信息

Rabzelj Sabina, Turk Vito, Zerovnik Eva

机构信息

Department of Biochemistry and Molecular Biology, JoZef Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia.

出版信息

Protein Sci. 2005 Oct;14(10):2713-22. doi: 10.1110/ps.051609705. Epub 2005 Sep 9.

DOI:10.1110/ps.051609705
PMID:16155205
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2253288/
Abstract

Myoclonus epilepsy of type 1 (EPM1) is a rare monogenic progressive and degenerative epilepsy, also known under the name Unverricht-Lundborg disease. With the aim of comparing their behavior in vitro, wild-type (wt) human stefin B (cystatin B) and the G4R and the R68X mutants observed in EPM1 were expressed and isolated from the Escherichia coli lysate. The R68X mutant (Arg68Stop) is a peptide of 67 amino acids from the N terminus of stefin B. CD spectra have shown that the R68X peptide is not folded, in contrast to the G4R mutant, which folds like wild type. The wild type and the G4R mutant were unfolded by urea and by trifluoroethanol (TFE). It has been shown that both proteins have closely similar stability and that at pH 4.8, where a native-like intermediate was demonstrated, TFE induces unfolding intermediates prior to the major transition to the all-alpha-helical state. Kinetics of fibril formation were followed by Thioflavin T fluorescence while the accompanying changes of morphology were followed by the transmission electron microscopy (TEM). For the two folded proteins the optimal concentration of TFE producing extensive lag phases and high fibril yields was predenaturational, 9% (v/v). The unfolded R68X peptide, which is highly prone to aggregate, formed amyloid fibrils in aqueous solution and in predenaturing 3% TFE. The G4R mutant exhibited a much longer lag phase than the wild type, with the accumulation of prefibrillar aggregates. Implications for pathology in view of the higher toxicity of prefibrillar aggregates to cells are discussed.

摘要

1型肌阵挛性癫痫(EPM1)是一种罕见的单基因进行性和退行性癫痫,也被称为翁韦里希特 - 伦德伯格病。为了比较它们在体外的行为,从大肠杆菌裂解物中表达并分离出野生型(wt)人stefin B(胱抑素B)以及在EPM1中观察到的G4R和R68X突变体。R68X突变体(Arg68Stop)是来自stefin B N端的一个67个氨基酸的肽段。圆二色光谱显示,与像野生型一样折叠的G4R突变体不同,R68X肽段没有折叠。野生型和G4R突变体被尿素和三氟乙醇(TFE)展开。结果表明,这两种蛋白质具有非常相似的稳定性,并且在pH 4.8时(此时证明存在类似天然的中间体),TFE在主要转变为全α螺旋状态之前诱导展开中间体。通过硫黄素T荧光跟踪纤维形成的动力学,同时通过透射电子显微镜(TEM)跟踪伴随的形态变化。对于这两种折叠的蛋白质,产生广泛延迟期和高纤维产量的TFE最佳浓度是变性前的9%(v/v)。高度易于聚集的未折叠R68X肽段在水溶液和变性前的3% TFE中形成淀粉样纤维。G4R突变体表现出比野生型长得多的延迟期,伴有前纤维聚集体的积累。鉴于前纤维聚集体对细胞具有更高的毒性,讨论了其对病理学的影响。

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