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迈向β-桶状蛋白家族的通用聚集机制:源自稳定二聚体物种的见解。

Toward a common aggregation mechanism for a β-barrel protein family: insights derived from a stable dimeric species.

作者信息

Angelani Carla R, Curto Lucrecia M, Cabanas Inés S, Caramelo Julio J, Uversky Vladimir N, Delfino José M

机构信息

Department of Biological Chemistry and Institute of Biochemistry and Biophysics (IQUIFIB), School of Pharmacy and Biochemistry, University of Buenos Aires, Junín 956, C1113AAD Buenos Aires, Argentina.

Instituto de Investigaciones Bioquímicas de Buenos Aires-CONICET and Laboratory of Structural Cell Biology, Leloir Institute Foundation, Av. Patricias Argentinas 435, C1405BWE Buenos Aires, Argentina; Department of Biological Chemistry-School of Sciences-University of Buenos Aires, Buenos Aires, Argentina.

出版信息

Biochim Biophys Acta. 2014 Sep;1844(9):1599-607. doi: 10.1016/j.bbapap.2014.06.002. Epub 2014 Jun 11.

Abstract

Δ78Δ is a second generation functional all-β sheet variant of IFABP (intestinal fatty acid binding protein) corresponding to the fragment 29-106 of the parent protein. This protein and its predecessor, Δ98Δ (segment 29-126 of IFABP), were initially uncovered by controlled proteolysis. Remarkably, although IFABP and Δ98Δ are monomers in solution, Δ78Δ adopts a stable dimeric structure. With the aim of identifying key structural features that modulate the aggregation of β-proteins, we evaluate here the structure and aggregation propensity of Δ78Δ. The 2,2,2-trifluoroethanol (TFE) induced aggregation of this protein shows a primary nucleation-elongation mechanism, characterized by the stabilization of a dimeric nucleus. Its rate of production from the co-solvent induced aggregation prone state governs the kinetics of polymerization. In this context, the value of Δ78Δ lies in the fact that - being a stable dimeric species - it reduces an otherwise bimolecular reaction to a unimolecular one. Interestingly, even though Δ78Δ and IFABP display similar conformational stability, the abrogated form of IFABP shows an enhanced aggregation rate, revealing the ancillary role played on this process by the free energy of the native proteins. Δ78Δ share with IFABP and Δ98Δ a common putative aggregation-prone central peptide. Differences in the exposure/accessibility of this segment dictated by the environment around this region might underlie the observed variations in the speed of aggregation. Lessons learnt from this natural dimeric protein might shed light on the early conformational events leading to β-conversion from barrels to amyloid aggregates.

摘要

Δ78Δ是肠脂肪酸结合蛋白(IFABP)的第二代功能性全β折叠变体,对应于母体蛋白的29 - 106片段。该蛋白及其前身Δ98Δ(IFABP的29 - 126片段)最初是通过可控蛋白水解发现的。值得注意的是,尽管IFABP和Δ98Δ在溶液中是单体,但Δ78Δ采用稳定的二聚体结构。为了确定调节β蛋白聚集的关键结构特征,我们在此评估Δ78Δ的结构和聚集倾向。2,2,2 - 三氟乙醇(TFE)诱导的该蛋白聚集显示出一级成核 - 延伸机制,其特征是二聚体核的稳定。其从共溶剂诱导的易聚集状态产生的速率决定了聚合动力学。在这种情况下,Δ78Δ的价值在于,作为一种稳定的二聚体物种,它将原本的双分子反应简化为单分子反应。有趣的是,尽管Δ78Δ和IFABP表现出相似的构象稳定性,但IFABP的缺失形式显示出增强的聚集速率,揭示了天然蛋白的自由能在这个过程中所起的辅助作用。Δ78Δ与IFABP和Δ98Δ共享一个共同的假定易聚集中心肽。该区域周围环境决定的这一片段的暴露/可及性差异可能是观察到的聚集速度变化的基础。从这种天然二聚体蛋白中学到的经验教训可能有助于揭示导致从桶状结构向淀粉样聚集体β转化的早期构象事件。

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