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组织蛋白酶L的表达导向分泌囊泡,用于脑啡肽神经肽的生物合成和分泌。

Cathepsin L expression is directed to secretory vesicles for enkephalin neuropeptide biosynthesis and secretion.

作者信息

Hwang Shin-Rong, Garza Christina, Mosier Charles, Toneff Thomas, Wunderlich Eric, Goldsmith Paul, Hook Vivian

机构信息

Skaggs School of Pharmacy and Pharmaceutical Sciences and Departments of Pharmacology, Neuroscience, and Medicine, School of Medicine, University of California, San Diego, La Jolla, California 92093.

Buck Institute, Novato, California 94545.

出版信息

J Biol Chem. 2007 Mar 30;282(13):9556-9563. doi: 10.1074/jbc.M605510200. Epub 2007 Jan 23.

Abstract

Proteases within secretory vesicles are required for conversion of neuropeptide precursors into active peptide neurotransmitters and hormones. This study demonstrates the novel cellular role of the cysteine protease cathepsin L for producing the (Met)enkephalin peptide neurotransmitter from proenkephalin (PE) in the regulated secretory pathway of neuroendocrine PC12 cells. These findings were achieved by coexpression of PE and cathepsin L cDNAs in PC12 cells with analyses of PE-derived peptide products. Expression of cathepsin L resulted in highly increased cellular levels of (Met)enkephalin, resulting from the conversion of PE to enkephalin-containing intermediates of 23, 18-19, 8-9, and 4.5 kDa that were similar to those present in vivo. Furthermore, expression of cathepsin L with PE resulted in increased amounts of nicotine-induced secretion of (Met)enkephalin. These results indicate increased levels of (Met)enkephalin within secretory vesicles of the regulated secretory pathway. Importantly, cathespin L expression was directed to secretory vesicles, demonstrated by colocalization of cathepsin L-DsRed fusion protein with enkephalin and chromogranin A neuropeptides that are present in secretory vesicles. In vivo studies also showed that cathepsin L in vivo was colocalized with enkephalin. The newly defined secretory vesicle function of cathepsin L for biosynthesis of active enkephalin opioid peptide contrasts with its function in lysosomes for protein degradation. These findings demonstrate cathepsin L as a distinct cysteine protease pathway for producing the enkephalin member of neuropeptides.

摘要

分泌小泡中的蛋白酶是将神经肽前体转化为活性肽神经递质和激素所必需的。本研究证明了半胱氨酸蛋白酶组织蛋白酶L在神经内分泌PC12细胞的调节性分泌途径中,从脑啡肽原(PE)产生(甲硫)脑啡肽肽神经递质的新细胞作用。这些发现是通过在PC12细胞中共表达PE和组织蛋白酶L的cDNA,并分析PE衍生的肽产物而获得的。组织蛋白酶L的表达导致(甲硫)脑啡肽的细胞水平显著增加,这是由于PE转化为23、18 - 19、8 - 9和4.5 kDa含脑啡肽的中间体,这些中间体与体内存在的中间体相似。此外,组织蛋白酶L与PE共同表达导致尼古丁诱导的(甲硫)脑啡肽分泌量增加。这些结果表明在调节性分泌途径的分泌小泡中(甲硫)脑啡肽水平升高。重要的是,组织蛋白酶L的表达定位于分泌小泡,这通过组织蛋白酶L - DsRed融合蛋白与分泌小泡中存在的脑啡肽和嗜铬粒蛋白A神经肽的共定位得以证明。体内研究还表明体内的组织蛋白酶L与脑啡肽共定位。组织蛋白酶L在分泌小泡中用于生物合成活性脑啡肽阿片肽的新定义功能与其在溶酶体中用于蛋白质降解的功能形成对比。这些发现证明组织蛋白酶L是产生神经肽脑啡肽成员的独特半胱氨酸蛋白酶途径。

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