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Hedgehog 蛋白的棕榈酰化修饰由 Hedgehog 酰基转移酶完成:在信号转导和疾病中的作用。

Palmitoylation of Hedgehog proteins by Hedgehog acyltransferase: roles in signalling and disease.

机构信息

Cell Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, Box 143, New York, NY 10065, USA.

出版信息

Open Biol. 2021 Mar;11(3):200414. doi: 10.1098/rsob.200414. Epub 2021 Mar 3.

Abstract

Hedgehog acyltransferase (Hhat), a member of the membrane-bound -acyltransferase (MBOAT) family, catalyses the covalent attachment of palmitate to the N-terminus of Hedgehog proteins. Palmitoylation is a post-translational modification essential for Hedgehog signalling. This review explores the mechanisms involved in Hhat acyltransferase enzymatic activity, similarities and differences between Hhat and other MBOAT enzymes, and the role of palmitoylation in Hedgehog signalling. and cell-based assays for Hhat activity have been developed, and residues within Hhat and Hedgehog essential for palmitoylation have been identified. In cells, Hhat promotes the transfer of palmitoyl-CoA from the cytoplasmic to the luminal side of the endoplasmic reticulum membrane, where Shh palmitoylation occurs. Palmitoylation is required for efficient delivery of secreted Hedgehog to its receptor Patched1, as well as for the deactivation of Patched1, which initiates the downstream Hedgehog signalling pathway. While Hhat loss is lethal during embryogenesis, mutations in Hhat have been linked to disease states or abnormalities in mice and humans. In adults, aberrant re-expression of Hedgehog ligands promotes tumorigenesis in an Hhat-dependent manner in a variety of different cancers, including pancreatic, breast and lung. Targeting hedgehog palmitoylation by inhibition of Hhat is thus a promising, potential intervention in human disease.

摘要

刺猬酰基转移酶(Hhat)是膜结合酰基转移酶(MBOAT)家族的成员,催化棕榈酸酯共价连接到刺猬蛋白的 N 端。棕榈酰化是刺猬信号所必需的一种翻译后修饰。本综述探讨了 Hhat 酰基转移酶酶活性的机制、Hhat 和其他 MBOAT 酶之间的相似性和差异,以及棕榈酰化在刺猬信号中的作用。已经开发出用于 Hhat 活性的细胞测定法,并且已经确定了 Hhat 和刺猬中对于棕榈酰化至关重要的残基。在细胞中,Hhat 促进棕榈酰-CoA 从细胞质向内质网膜的腔侧转移,其中 Shh 发生棕榈酰化。棕榈酰化对于分泌的刺猬有效地递送到其受体 Patched1 以及 Patched1 的失活是必需的,这启动了下游的刺猬信号通路。虽然在胚胎发生期间 Hhat 的缺失是致命的,但 Hhat 的突变已与疾病状态或小鼠和人类的异常相关。在成年人中,刺猬配体的异常重新表达以 Hhat 依赖的方式促进各种不同癌症(包括胰腺、乳腺和肺)中的肿瘤发生。因此,通过抑制 Hhat 抑制刺猬棕榈酰化是人类疾病的一种有前途的潜在干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e92a/8061759/a7897420a9c0/rsob200414f01.jpg

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