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一种新的蛋白水解活性,显然在大肠杆菌体外提取物中引发β-半乳糖苷酶无义片段的降解。

A novel proteolytic activity apparently initiating degradation of beta-galactosidase nonsense fragments in in vitro extracts of Escherichia coli.

作者信息

McKnight J L, Fried V A

出版信息

J Biol Chem. 1983 Jun 25;258(12):7550-5.

PMID:6408078
Abstract

Our previous in vivo studies demonstrated that large premature fragments of beta-galactosidase are degraded in Escherichia coli by a common pathway, and the initial event appears to be a site-specific cleavage (McKnight, J. L., and Fried, V. A. (1981) J. Biol. Chem. 256, 9652-9661). We now have developed a cell-free system that retains the specificity of this early cleavage event. Immunochemical techniques were used to isolate and quantitate the polypeptide substrate and products in pulse-chase experiments. The in vitro system has an activity that quantitatively converts the prematurely terminated A polypeptide of the lacZ non-sense mutant CSH-10 to the 90-kilodalton common B polypeptide intermediate observed in vivo. The activity is localized in the cytoplasm since the cleavage reaction is not affected by osmotic shock of whole cells or removal of the membrane fraction from cell-free extracts. The lon mutation capR9, which blocks this degradation pathway in vivo, does not affect the initial cleavage event in cell-free extracts of CSH-10 carrying this mutation. The in vitro cleavage event in extracts of lon+ CSH-10 or the isogenic lon- mutant is not stimulated by addition of ATP, not inhibited by depletion of ATP pools by hexokinase-2-deoxyglucose treatment, and not inhibited by EDTA or phenylmethylsulfonyl fluoride. These results suggest that the ATP-dependent proteolytic activity of the lon gene product does not directly catalyze this primary cleavage event.

摘要

我们之前的体内研究表明,β-半乳糖苷酶的大的过早片段在大肠杆菌中通过一条共同途径被降解,并且初始事件似乎是位点特异性切割(麦克奈特,J. L.,和弗里德,V. A.(1981年)《生物化学杂志》256卷,9652 - 9661页)。我们现在已经开发出一种无细胞系统,该系统保留了这种早期切割事件的特异性。在脉冲追踪实验中,使用免疫化学技术分离和定量多肽底物及产物。体外系统具有一种活性,能将lacZ无义突变体CSH - 10过早终止的A多肽定量转化为体内观察到的90千道尔顿的共同B多肽中间体。该活性定位于细胞质中,因为切割反应不受全细胞的渗透休克或从无细胞提取物中去除膜部分的影响。lon突变capR9在体内阻断了这条降解途径,但不影响携带此突变的CSH - 10无细胞提取物中的初始切割事件。在lon + CSH - 10或同基因lon - 突变体提取物中的体外切割事件不受ATP添加的刺激,不受己糖激酶 - 2 - 脱氧葡萄糖处理耗尽ATP池的抑制,也不受EDTA或苯甲基磺酰氟的抑制。这些结果表明,lon基因产物的ATP依赖性蛋白水解活性并不直接催化这一初级切割事件。

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