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分泌颗粒蛋白 III:核心激素聚集体与分泌颗粒膜之间的桥梁。

Secretogranin III: a bridge between core hormone aggregates and the secretory granule membrane.

机构信息

Department of Molecular Medicine, Institute for Molecular and Cellular Regulation, Gunma University, Maebashi, Japan.

出版信息

Endocr J. 2010;57(4):275-86. doi: 10.1507/endocrj.k10e-038. Epub 2010 Mar 4.

Abstract

Secretory granules in endocrine cells selectively store bioactive peptide hormones and amines, which are secreted in a regulated manner upon appropriate stimulation. In addition to bioactive substances, various proteins and lipids characteristic of secretory granules are likely recruited to a restricted space at the trans-Golgi Network (TGN), and the space then matures to the secretory granule. Although experimental findings so far have strongly suggested that aggregation- and receptor-mediated processes are essential for the formation of secretory granules, the putative link between these two processes remains to be clarified. Recently, secretogranin III (SgIII) has been identified as a specific binding protein for chromogranin A (CgA), a representative constituent of the core aggregate within secretory granules, and it was later revealed that SgIII can also bind to the cholesterol-rich membrane domain at the TGN. Based on its multifaceted binding properties, SgIII may act as a central player in the formation of cholesterol-rich membrane platforms. Upon these platforms, essential processes for secretory granule biogenesis coordinately occur; that is, selective recruitment of prohormones, processing and modifying of prohormones, and condensation of mature hormones as an aggregate. This review summarizes the findings and theoretical concepts on the issue to date and then focuses on the putative role of SgIII in secretory granule biogenesis in endocrine cells.

摘要

内分泌细胞中的分泌颗粒选择性地储存生物活性肽激素和胺类物质,这些物质在适当的刺激下以受调控的方式分泌。除了生物活性物质外,分泌颗粒特有的各种蛋白质和脂质也可能被募集到跨高尔基网络 (TGN) 的受限空间,然后该空间成熟为分泌颗粒。尽管到目前为止的实验结果强烈表明聚集和受体介导的过程对于分泌颗粒的形成是必不可少的,但这两个过程之间的潜在联系仍有待阐明。最近,发现脑啡肽原 III (SgIII) 是分泌颗粒核心聚集体代表性成分嗜铬粒蛋白 A (CgA) 的特异性结合蛋白,后来发现 SgIII 还可以与 TGN 中的富含胆固醇的膜域结合。基于其多方面的结合特性,SgIII 可能在富含胆固醇的膜平台的形成中发挥核心作用。在这些平台上,共同发生了与分泌颗粒生物发生相关的必要过程,即激素原的选择性募集、激素原的加工和修饰以及成熟激素作为聚集体的浓缩。这篇综述总结了迄今为止关于该问题的研究结果和理论概念,然后重点介绍了 SgIII 在内分泌细胞中分泌颗粒生物发生中的推测作用。

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