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Quantification of Quaternary Structure Stability in Aggregation- Prone Proteins under Physiological Conditions: The Transthyretin Case

机译:在生理条件下聚集型蛋白质季度结构稳定性的定量:Transthyretin案例

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摘要

The quaternary structure stability of proteins is typically studied under conditions that accelerate their aggregation/unfolding processes on convenient laboratory time scales. Such conditions include high temperature or pressure, chaotrope-mediated unfolding, or low or high pH. These approaches have the limitation of being nonphysiological and that the concentration of the protein in solution is changing as the reactions proceed. We describe a methodology to define the quaternary structure stability of the amyloidogenic homotetrameric protein transthyretin (TTR) under physiological conditions. This methodology expands from a described approach based on the measurement of the rate of subunit exchange of TTR with a tandem flag-tagged (FT_2) TTR counterpart. We demonstrate that subunit exchange of TTR with FT_2· TTR can be analyzed and quantified using a semi-native polyacrylamide gel electrophoresis technique. In addition, we biophysically characterized two FT2·TTR variants derived from wild-type and the amyloidogenic variant Val122Ile TTR, both of which are associated with cardiac amyloid deposition late in life. The FT_2·TTR variants have similar amyloidogenic potential and similar thermodynamic and kinetic stabilities compared to those of their nontagged counterparts. We utilized the methodology to study the potential of the small molecule SOM0226, a repurposed drug under clinical development for the prevention and treatment of the TTR amyloidoses, to stabilize TTR. The results enabled us to characterize the binding energetics of SOM0226 to TTR. The described technique is well-suited to study the quaternary structure of other human aggregation-prone proteins under physiological conditions.
机译:通常在加速其聚集/展开过程的条件下研究蛋白质的季结构稳定性在方便的实验室时间尺度上。这些条件包括高温或压力,螯理介导的展开或低或高pH。这些方法具有非物理学的限制,并且随着反应进行的,溶液中蛋白质的浓度变化。我们描述了在生理条件下定义淀粉样蛋白同源聚体蛋白质Transthyretin(TTR)的季结构稳定性的方法。该方法从所描述的方法扩展,基于测量TTR的子单元交换率与串联标记(FT_2)TTR对应物。我们证明,可以使用半天然聚丙烯酰胺凝胶电泳技术分析和定量具有FT_2·TTR的TTR的亚基交换。此外,我们对源自野生型和淀粉样蛋白变体Val12222ile TTR的两种FT2·TTR变体进行了两种FT2·TTR变体,两者都与生命后期的心脏淀粉样蛋白沉积相关。与其未验证的同行相比,FT_2·TTR变体具有类似的淀粉样活性和类似的热力学和动力学和动力学稳定性。我们利用该方法研究小分子Som0226的潜力,在临床开发中进行重新灌注的药物,用于预防和治疗TTR淀粉样蛋白,以稳定TTR。结果使我们能够将Som0226的绑定能量学表征为TTR。所描述的技术非常适合于在生理条件下研究其他人聚集 - 易受蛋白质的季结构。

著录项

  • 来源
    《Biochemistry》 |2014年第41期|共15页
  • 作者单位

    Department of Molecular and Experimental Medicine The Scripps Research Institute 10550 North Torrey Pines Road La Jolla California 92037 United States;

    Department of Molecular and Experimental Medicine The Scripps Research Institute 10550 North Torrey Pines Road La Jolla California 92037 United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Quantification; Quaternary; Structure;

    机译:量化;第四纪;结构;

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