Suppr超能文献

血管细胞黏附分子1共翻译易位的选择性抑制

Selective inhibition of cotranslational translocation of vascular cell adhesion molecule 1.

作者信息

Besemer Jürgen, Harant Hanna, Wang Shirley, Oberhauser Berndt, Marquardt Katharina, Foster Carolyn A, Schreiner Erwin P, de Vries Jan E, Dascher-Nadel Christiane, Lindley Ivan J D

机构信息

Novartis Institutes for BioMedical Research, Brunner Strasse 59, A-1235 Vienna, Austria.

出版信息

Nature. 2005 Jul 14;436(7048):290-3. doi: 10.1038/nature03670.

Abstract

Increased expression of vascular cell adhesion molecule 1 (VCAM1) is associated with a variety of chronic inflammatory conditions, making its expression and function a target for therapeutic intervention. We have recently identified CAM741, a derivative of a fungus-derived cyclopeptolide that acts as a selective inhibitor of VCAM1 synthesis in endothelial cells. Here we show that the compound represses the biosynthesis of VCAM1 in cells by blocking the process of cotranslational translocation, which is dependent on the signal peptide of VCAM1. CAM741 does not inhibit targeting of the VCAM1 nascent chains to the translocon channel but prevents translocation to the luminal side of the endoplasmic reticulum (ER), through a process that involves the translocon component Sec61beta. Consequently, the VCAM1 precursor protein is synthesized towards the cytosolic compartment of the cells, where it is degraded. Our results indicate that the inhibition of cotranslational translocation with low-molecular-mass compounds, using specificity conferred by signal peptides, can modulate the biosynthesis of certain secreted and/or membrane proteins. In addition, they highlight cotranslational translocation at the ER membrane as a potential target for drug discovery.

摘要

血管细胞黏附分子1(VCAM1)表达增加与多种慢性炎症性疾病相关,这使得其表达和功能成为治疗干预的靶点。我们最近鉴定出CAM741,一种源自真菌的环肽类化合物的衍生物,它在内皮细胞中作为VCAM1合成的选择性抑制剂。在此我们表明,该化合物通过阻断共翻译转运过程来抑制细胞中VCAM1的生物合成,这一过程依赖于VCAM1的信号肽。CAM741并不抑制VCAM1新生链靶向转运通道,但通过涉及转运通道成分Sec61β的过程阻止其转运至内质网(ER)腔侧。因此,VCAM1前体蛋白向细胞的胞质区室合成,在那里它被降解。我们的结果表明,利用信号肽赋予的特异性,用低分子量化合物抑制共翻译转运可以调节某些分泌和/或膜蛋白的生物合成。此外,它们突出了内质网膜上的共翻译转运作为药物发现的潜在靶点。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验