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疾病相关 p97 突变体的结构和功能偏差。

Structural and functional deviations in disease-associated p97 mutants.

机构信息

Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Struct Biol. 2012 Aug;179(2):83-92. doi: 10.1016/j.jsb.2012.04.024. Epub 2012 May 8.

Abstract

Missense mutations that occur at the interface between two functional domains in the AAA protein p97 lead to suboptimal performance in its enzymatic activity and impaired intracellular functions, causing human disorders such as inclusion body myopathy associated with Paget's disease of the bone and frontotemporal dementia (IBMPFD). Much progress has been made in characterizing these mutants at cellular, sub-cellular and molecular levels, gaining a substantial understanding of the involvement of p97 in various cellular pathways. At the tissue level, patient biopsies revealed co-localization of p97 with pathologic proteineous inclusions and rimmed vacuoles, which can be reproduced in various cellular and animal models of IBMPFD. At the subcellular level, alterations in p97's ability to bind various adaptor proteins have been demonstrated for some but not all binding partners. Biochemical and biophysical characterizations of pathogenic p97 revealed altered nucleotide binding properties in the D1-domains compared to the wild type. Structural studies showed that mutant p97 are capable of undergoing a uniform transition in the N-domain from a Down- to an Up-conformation in the presence of ATPγS, while in the wild-type p97, this conformational change can only be demonstrated in solutions but not in crystals. These structural and biochemical analyses of IBMPFD mutants shed new light into the mechanism of p97 function.

摘要

在 AAA 蛋白 p97 的两个功能域之间的界面处发生的错义突变导致其酶活性的性能不佳,并损害了细胞内功能,从而导致人类疾病,如与骨 Paget 病和额颞叶痴呆(IBMPFD)相关的包涵体肌病。在细胞、亚细胞和分子水平上对这些突变体进行了大量的研究,对 p97 在各种细胞途径中的作用有了实质性的了解。在组织水平上,患者活检显示 p97 与病理性蛋白包涵体和边缘空泡共定位,这可以在各种 IBMPFD 的细胞和动物模型中重现。在亚细胞水平上,已经证明了 p97 与各种衔接蛋白结合的能力发生了改变,但并非所有结合伴侣都是如此。对致病性 p97 的生化和生物物理特性的研究表明,与野生型相比,D1 结构域中的核苷酸结合特性发生了改变。结构研究表明,在 ATPγS 的存在下,突变型 p97 的 N 结构域能够从 Down 构象到 Up 构象进行均匀转变,而在野生型 p97 中,这种构象变化只能在溶液中而不是晶体中证明。对 IBMPFD 突变体的这些结构和生化分析为 p97 功能的机制提供了新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7980/4788498/7334001364d3/nihms-764008-f0001.jpg

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