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带电荷的α螺旋中的疏水区域足以将蛋白质靶向致密核心分泌颗粒。

A hydrophobic patch in a charged alpha-helix is sufficient to target proteins to dense core secretory granules.

作者信息

Dikeakos Jimmy D, Lacombe Marie-Josée, Mercure Chantal, Mireuta Matei, Reudelhuber Timothy L

机构信息

Laboratory of Molecular Biochemistry of Hypertension, Clinical Research Institute of Montreal, Montreal, Quebec H2W 1R7, Canada.

出版信息

J Biol Chem. 2007 Jan 12;282(2):1136-43. doi: 10.1074/jbc.M605718200. Epub 2006 Nov 8.

DOI:10.1074/jbc.M605718200
PMID:17092937
Abstract

Many endocrine and neuroendocrine cells contain specialized secretory organelles called dense core secretory granules. These organelles are the repository of proteins and peptides that are secreted in a regulated manner when the cell receives a physiological stimulus. The targeting of proteins to these secretory granules is crucial for the generation of certain peptide hormones, including insulin and ACTH. Although previous work has demonstrated that proteins destined to a variety of cellular locations, including secretory granules, contain targeting sequences, no single consensus sequence for secretory granule-sorting signals has emerged. We have shown previously that alpha-helical domains in the C-terminal tail of the prohormone convertase PC1/3 play an important role in the ability of this region of the protein to direct secretory granule targeting (Jutras, I. Seidah, N. G., and Reudelhuber, T. L. (2000) J. Biol. Chem. 275, 40337-40343). In this study, we show that a variety of alpha-helical domains are capable of directing a heterologous secretory protein to granules. By testing a series of synthetic alpha-helices, we also demonstrate that the presence of charged (either positive or negative) amino acids spatially segregated from a hydrophobic patch in the alpha-helices of secretory proteins likely plays a critical role in the ability of these structures to direct secretory granule sorting.

摘要

许多内分泌细胞和神经内分泌细胞含有称为致密核心分泌颗粒的特殊分泌细胞器。这些细胞器是蛋白质和肽的储存库,当细胞受到生理刺激时,它们会以一种受调控的方式分泌。蛋白质靶向这些分泌颗粒对于某些肽激素(包括胰岛素和促肾上腺皮质激素)的产生至关重要。尽管先前的研究表明,注定要进入包括分泌颗粒在内的各种细胞位置的蛋白质都含有靶向序列,但尚未出现分泌颗粒分选信号的单一共有序列。我们之前已经表明,激素原转化酶PC1/3的C末端尾巴中的α-螺旋结构域在该区域的蛋白质指导分泌颗粒靶向的能力中起重要作用(朱特拉斯,I. 塞达,N. G.,和鲁德尔胡伯,T. L.(2000年)《生物化学杂志》275卷,40337 - 40343页)。在这项研究中,我们表明各种α-螺旋结构域都能够将异源分泌蛋白导向颗粒。通过测试一系列合成α-螺旋,我们还证明,分泌蛋白α-螺旋中与疏水斑块在空间上分离的带电荷(正或负)氨基酸的存在,可能在这些结构指导分泌颗粒分选的能力中起关键作用。

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