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结构与功能视角下分子伴侣在Ⅰ型原发性高草酸尿症相关错误定位和聚集表型中的作用

Structural and functional insights on the roles of molecular chaperones in the mistargeting and aggregation phenotypes associated with primary hyperoxaluria type I.

机构信息

Biofisika Institute (CSIC, UPV/EHU) and Department of Biochemistry and Molecular Biology, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), Bilbao, Spain.

Centre for Biomedical Research on Rare Diseases (CIBERER), Hospital Universitario de Canarias, ITB, University of La Laguna, Tenerife, Spain.

出版信息

Adv Protein Chem Struct Biol. 2019;114:119-152. doi: 10.1016/bs.apcsb.2018.09.003. Epub 2018 Nov 28.

Abstract

To carry out their biological function in cells, proteins must be folded and targeted to the appropriate subcellular location. These processes are controlled by a vast collection of interacting proteins collectively known as the protein homeostasis network, in which molecular chaperones play a prominent role. Protein homeostasis can be impaired by inherited mutations leading to genetic diseases. In this chapter, we focus on a particular disease, primary hyperoxaluria type 1 (PH1), in which disease-associated mutations exacerbate protein aggregation in the cell and mistarget the peroxisomal alanine:glyoxylate aminotransferase (AGT) protein to mitochondria, in part due to native state destabilization and enhanced interaction with Hsp60, 70 and 90 chaperone systems. After a general introduction of molecular chaperones and PH1, we review our current knowledge on the structural and energetic features of PH1-causing mutants that lead to these particular pathogenic mechanisms. From this perspective, and in the context of the key role of molecular chaperones in PH1 pathogenesis, we present and discuss current and future perspectives for pharmacological treatments for this disease.

摘要

为了在细胞中发挥其生物功能,蛋白质必须折叠并靶向到适当的亚细胞位置。这些过程由大量相互作用的蛋白质控制,统称为蛋白质平衡网络,其中分子伴侣起着重要作用。蛋白质平衡可能会因导致遗传疾病的遗传突变而受损。在本章中,我们专注于一种特定的疾病,即原发性高草酸尿症 1 型(PH1),其中与疾病相关的突变会加剧细胞中的蛋白质聚集,并将过氧化物酶体丙氨酸:乙醛酸转氨酶(AGT)蛋白错误靶向线粒体,部分原因是天然状态的不稳定和与 Hsp60、70 和 90 伴侣系统的增强相互作用。在对分子伴侣和 PH1 进行一般性介绍之后,我们回顾了导致这些特定致病机制的 PH1 致病突变的结构和能量特征的现有知识。从这个角度来看,并结合分子伴侣在 PH1 发病机制中的关键作用,我们提出并讨论了针对这种疾病的当前和未来的药物治疗前景。

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