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Evi/Wntless 在 Wnt 蛋白输出中的作用。

The role of Evi/Wntless in exporting Wnt proteins.

机构信息

German Cancer Research Center (DKFZ), Division of Signalling and Functional Genomics and Heidelberg University, BioQuant and Department of Cell and Molecular Biology, 69120 Heidelberg, Germany.

出版信息

Development. 2023 Feb 15;150(3). doi: 10.1242/dev.201352. Epub 2023 Feb 10.

Abstract

Intercellular communication by Wnt proteins governs many essential processes during development, tissue homeostasis and disease in all metazoans. Many context-dependent effects are initiated in the Wnt-producing cells and depend on the export of lipidated Wnt proteins. Although much focus has been on understanding intracellular Wnt signal transduction, the cellular machinery responsible for Wnt secretion became better understood only recently. After lipid modification by the acyl-transferase Porcupine, Wnt proteins bind their dedicated cargo protein Evi/Wntless for transport and secretion. Evi/Wntless and Porcupine are conserved transmembrane proteins, and their 3D structures were recently determined. In this Review, we summarise studies and structural data highlighting how Wnts are transported from the ER to the plasma membrane, and the role of SNX3-retromer during the recycling of its cargo receptor Evi/Wntless. We also describe the regulation of Wnt export through a post-translational mechanism and review the importance of Wnt secretion for organ development and cancer, and as a future biomarker.

摘要

Wnt 蛋白通过细胞间通讯调控所有后生动物在发育、组织稳态和疾病过程中的许多基本过程。许多依赖于上下文的效应都是在产生 Wnt 的细胞中启动的,并且依赖于脂化 Wnt 蛋白的输出。尽管人们非常关注理解细胞内 Wnt 信号转导,但负责 Wnt 分泌的细胞机制直到最近才被更好地理解。在酰基转移酶 Porcupine 的脂修饰后,Wnt 蛋白与其专用货物蛋白 Evi/Wntless 结合进行运输和分泌。Evi/Wntless 和 Porcupine 是保守的跨膜蛋白,它们的 3D 结构最近已被确定。在这篇综述中,我们总结了强调 Wnt 如何从内质网运输到质膜的研究和结构数据,以及 SNX3-逆行转运蛋白在其货物受体 Evi/Wntless 再循环过程中的作用。我们还描述了通过翻译后机制对 Wnt 输出的调节,并回顾了 Wnt 分泌对器官发育和癌症的重要性,以及作为未来的生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab1a/10112924/98df16679bef/develop-150-201352-g1.jpg

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