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β2-微球蛋白中的 D 链扰动和淀粉样倾向。

D-strand perturbation and amyloid propensity in beta-2 microglobulin.

机构信息

Dipartimento di Scienze Biomolecolari e Biotecnologie and CIMAINA, Università degli Studi di Milano, Milan, Italy.

出版信息

FEBS J. 2011 Jul;278(13):2349-58. doi: 10.1111/j.1742-4658.2011.08157.x. Epub 2011 May 31.

Abstract

Proteins hosting main β-sheets adopt specific strategies to avoid intermolecular interactions leading to aggregation and amyloid deposition. Human beta-2 microglobulin (β2m) displays a typical immunoglobulin fold and is known to be amyloidogenic in vivo. Upon severe kidney deficiency, β2m accumulates in the bloodstream, triggering, over the years, pathological deposition of large amyloid aggregates in joints and bones. A β-bulge observed on the edge D β-strand of some β2m crystal structures has been suggested to be crucial in protecting the protein from amyloid aggregation. Conversely, a straight D-strand, observed in different crystal structures of monomeric β2m, could promote amyloid aggregation. More recently, the different conformations observed for the β2m D-strand have been interpreted as the result of intrinsic flexibility, rather than being assigned to a functional protective role against aggregation. To shed light on such contrasting picture, the mutation Asp53→Pro was engineered in β2m, aiming to impair the formation of a regular/straight D-strand. Such a mutant was characterized structurally and biophysically by CD, X-ray crystallography and MS, in addition to an assessment of its amyloid aggregation trends in vitro. The results reported in the present study highlight the conformational plasticity of the edge D-strand, and show that even perturbing the D-strand structure through a Pro residue has only marginal effects on protecting β2m from amyloid aggregation in vitro.

摘要

具有主要β-折叠的蛋白质采用特定的策略来避免导致聚集和淀粉样沉积的分子间相互作用。人β-2 微球蛋白(β2m)具有典型的免疫球蛋白折叠结构,已知在体内具有淀粉样变性。在严重的肾功能不全时,β2m 在血液中积累,多年来,在关节和骨骼中引发大量淀粉样聚集物的病理性沉积。在一些β2m 晶体结构的边缘 D-β-链上观察到的β-突环被认为在保护蛋白质免受淀粉样聚集方面至关重要。相反,在单体β2m 的不同晶体结构中观察到的直 D-链可能促进淀粉样聚集。最近,β2m D-链观察到的不同构象被解释为固有灵活性的结果,而不是赋予其对聚集的功能保护作用。为了阐明这种对比鲜明的情况,在β2m 中设计了突变 Asp53→Pro,旨在破坏规则/直 D-链的形成。通过 CD、X 射线晶体学和 MS 对这种突变体进行了结构和生物物理特性的表征,此外还评估了其在体外的淀粉样聚集趋势。本研究报告的结果强调了边缘 D-链的构象灵活性,并表明即使通过脯氨酸残基破坏 D-链结构,对体外保护β2m 免受淀粉样聚集的影响也只有很小的作用。

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