Ege University, Faculty of Pharmacy, Biochemistry Department, Izmir, Turkey.
Int J Biochem Cell Biol. 2013 Apr;45(4):773-82. doi: 10.1016/j.biocel.2013.01.006. Epub 2013 Jan 16.
p97/VCP is a hexameric AAA type ATPase that functions in a variety of cellular processes such as endoplasmic reticulum associated degradation (ERAD), organelle biogenesis, autophagy and cell-cycle regulation. Inclusion body myopathy associated with Paget disease of the bone and frontotemporal dementia (IBMPFD) is an autosomal dominant disorder which has been attributed to mutations in p97/VCP. Several missense mutations affecting twelve different amino acids have been identified in IBMPFD patients and some of them were suggested to be involved in the observed pathology. Here, we analyzed the effect of all twelve p97/VCP variants on ERAD substrates and their cofactor binding abilities. While all mutants cause ERAD substrate accumulation, P137L mutant p97/VCP differs from other IBMPFD mutants by having a unique solubility profile and subcellular localization. Intriguingly, although almost all mutants exhibit enhanced p47 and Ufd1-Npl4 binding, the P137L mutation completely abolishes p97/VCP interactions with Ufd1, Npl4 and p47, while retaining its gp78 binding. While recombinant R155C mutant protein consistently interacts with both Ufd1 and VIM of gp78, P137L mutant protein lost binding ability to Ufd1 but not to VIM in vitro. The differential impairments in p97/VCP interactions with its functional partners and function should help our understanding of the molecular pathogenesis of IBMPFD.
p97/VCP 是一种六聚体 AAA 型 ATP 酶,在多种细胞过程中发挥作用,如内质网相关降解 (ERAD)、细胞器发生、自噬和细胞周期调节。伴有骨 Pagets 病和额颞叶痴呆的包涵体肌病 (IBMPFD) 是一种常染色体显性疾病,其归因于 p97/VCP 的突变。在 IBMPFD 患者中已经鉴定出影响十二个不同氨基酸的几种错义突变,其中一些被认为与观察到的病理学有关。在这里,我们分析了所有十二个 p97/VCP 变体对 ERAD 底物及其辅助因子结合能力的影响。虽然所有突变体都导致 ERAD 底物积累,但 P137L 突变体 p97/VCP 与其他 IBMPFD 突变体不同,具有独特的可溶性谱和亚细胞定位。有趣的是,尽管几乎所有突变体都表现出增强的 p47 和 Ufd1-Npl4 结合,但 P137L 突变完全消除了 p97/VCP 与 Ufd1、Npl4 和 p47 的相互作用,同时保留其与 gp78 的结合。虽然重组 R155C 突变蛋白始终与 Ufd1 和 gp78 的 VIM 相互作用,但 P137L 突变蛋白在体外失去与 Ufd1 的结合能力,但与 VIM 的结合能力没有丧失。p97/VCP 与其功能伙伴的相互作用和功能的差异损伤应该有助于我们理解 IBMPFD 的分子发病机制。