Exocyst Sec10 is involved in basolateral protein translation and translocation in the endoplasmic reticulum.

Nephron Experimental Nephrology Pub Date : 2012-01-01 Epub Date: 2012-10-04 DOI:10.1159/000342366
Soo Young Choi, Ben Fogelgren, Xiaofeng Zuo, Liwei Huang, Sarah McKenna, Vishwanath R Lingappa, Joshua H Lipschutz
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引用次数: 4

Abstract

Background: Protein translation and translocation at the rough endoplasmic reticulum (RER) are the first steps in the secretory pathway. The translocon through which newly made proteins are translocated into or across the RER membrane consists of three main subunits: Sec61α, -β, and -γ. Sec61β facilitates translocation, and we and others have shown that the highly conserved eight-protein exocyst complex interacts with Sec61β. We have also shown that the exocyst is involved in basolateral, not apical, protein synthesis and delivery. Recently, however, exocyst involvement in apical protein delivery has been reported. Furthermore, we have shown that the exocyst is necessary for formation of primary cilia, organelles found on the apical surface.

Methods: GST pulldown was performed on lysate of renal tubule cells to investigate biochemical interactions. Cell-free assays consisting of cell-free extracts from rabbit reticulocytes, pancreatic endoplasmic reticulum (ER) microsomal membranes, transcripts of cDNA from apical and basolateral proteins, ATP/GTP, amino acids, and (35)S-methionine for protein detection were used to investigate the role of the exocyst in synthesis of polarized proteins. P(32)-orthophosphate and immunoprecipitation with antibody against Sec61β was used to investigate Sec61β phosphorylation in exocyst Sec10-overexpressing cells.

Results: Sec10 biochemically interacts with Sec61β using GST pulldown. Using cell-free assays, there is enhanced exocyst recruitment to endoplasmic reticulum membranes following exocyst depletion and basolateral G protein of vesicular stomatitis virus protein translation, compared to apical hemagglutinin of influenza virus protein translation. Finally, Sec10 overexpression increases Sec61β phosphorylation.

Conclusion: These data confirm that the exocyst is preferentially involved in basolateral protein translation and translocation, and may well act through the phosphorylation of Sec61β.

胞囊Sec10参与内质网基底外侧蛋白的翻译和易位。
背景:粗内质网(RER)的蛋白质翻译和易位是分泌途径的第一步。新生成的蛋白质通过转座子转运进入或穿过RER膜,由三个主要亚基组成:Sec61α, -β和-γ。Sec61β促进易位,我们和其他人已经证明高度保守的8蛋白外囊复合体与Sec61β相互作用。我们还表明,囊泡参与基底外侧,而不是顶端,蛋白质的合成和传递。然而,最近有报道称,囊泡参与了根尖蛋白的传递。此外,我们已经表明,囊泡是必要的初级纤毛,发现在顶端表面的细胞器的形成。方法:对肾小管细胞裂解液进行GST下拉,研究其生化相互作用。利用兔网织细胞、胰腺内质网微粒体膜的无细胞提取物、根尖和基底外侧蛋白质的cDNA转录本、ATP/GTP、氨基酸和用于蛋白质检测的(35)s -蛋氨酸的无细胞实验来研究囊泡在极化蛋白合成中的作用。采用P(32)-正磷酸盐法和抗Sec61β抗体免疫沉淀法研究Sec61β在囊泡过表达sec10细胞中的磷酸化作用。结果:Sec10通过GST下拉作用与Sec61β相互作用。通过无细胞检测,与流感病毒蛋白翻译的根尖血凝素相比,囊泡耗竭后,囊泡向内质网膜的募集增强,泡性口炎病毒蛋白翻译的基底外侧G蛋白增强。最后,Sec10过表达增加Sec61β磷酸化。结论:这些数据证实,囊泡优先参与基底外侧蛋白的翻译和易位,并可能通过Sec61β的磷酸化发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nephron Experimental Nephrology
Nephron Experimental Nephrology 医学-泌尿学与肾脏学
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