通过体外转录和翻译产生放射性标记神经肽前体。

Peptide research Pub Date : 1996-07-01
V Y Hook, M R Schiller, C Nguyen, S Yasothornsrikul
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引用次数: 0

摘要

生物活性肽激素和神经递质是神经内分泌调节细胞功能所必需的。重要的是,无活性神经肽前体的蛋白水解加工是产生生理活性肽激素和神经递质所必需的。加工酶的研究需要真正的神经肽前体作为底物,而不是肽底物。本研究展示了一种通过体外转录和翻译从克隆cdna中提取一般35s前体的有效方法。在体外用SP6 RNA聚合酶转录神经肽cdna产生大量(微克)相应的RNA。随后用小麦胚芽提取物和35s -蛋氨酸在体外翻译rna,产生大量35s前体蛋白(每次反应10- 2500万cpm),具有高比放射性。放射性标记前体底物为检测蛋白水解活性提供了一种可靠、灵敏和准确的方法。重要的是,用35s -脑啡肽前体作为底物,而不是用肽甲基香豆素(MCA)底物,对染色质颗粒中原脑啡肽加工活性的特异性检测,说明了使用全长前体检测适当加工酶的重要性。该研究表明,通过体外转录和翻译高效生产放射性标记神经肽前体将有助于相关加工蛋白酶的体外检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of radiolabeled neuropeptide precursors by in vitro transcription and translation.

Bioactive peptide hormones and neurotransmitters are required for neuroendocrine regulation of cellular functions. Importantly, proteolytic processing of inactive neuropeptide precursors is required to generate physiologically active peptide hormones and neurotransmitters. Studies of the processing enzymes require authentic neuropeptide precursors as substrates, rather than peptide substrates. This study demonstrates an efficient method to general 35S-precursors from cloned cDNAs by in vitro transcription and translation. In vitro transcription of neuropeptide cDNAs with SP6 RNA polymerase generates large amounts (micrograms) of corresponding RNAs. Subsequent in vitro translation of RNAs with wheat germ extract and 35S-methionine generates large quantities of 35S-precursors (10-25 million cpm 35S-precursor protein per reaction) with high specific radioactivity. The radiolabeled precursor substrates offer a reliable, sensitive and accurate method for detecting the proteolytic activity. Importantly, specific detection of the primary proenkephalin processing activity in chromaffin granules by 35S-enkephalin precursor as substrate, but not by peptide methylcoumarinamide (MCA) substrates, illustrates the significance of using full-length precursor to detect appropriate processing enzymes. This study demonstrates that efficient production of radiolabeled neuropeptide precursors by in vitro transcription and translation will be useful for in vitro assays of relevant processing proteases.

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