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伴侣蛋白依赖性的核糖体结合新生硫氰酸酶的折叠与激活。荧光分析

Chaperone-dependent folding and activation of ribosome-bound nascent rhodanese. Analysis by fluorescence.

作者信息

Kudlicki W, Odom O W, Kramer G, Hardesty B

机构信息

University of Texas at Austin 78712.

出版信息

J Mol Biol. 1994 Dec 2;244(3):319-31. doi: 10.1006/jmbi.1994.1732.

Abstract

Fluorescently labeled rhodanese was synthesized by coupled transcription/translation in a cell-free Escherichia coli system. A derivative of coumarin was co-translationally incorporated at the N terminus of the polypeptide. Molecules released from the ribosomes during the incubation are enzymatically active; however, continued incubation results in accumulation of enzymatically inactive full-length rhodanese polypeptides on the ribosomes. These can be activated and released in the presence of the added chaperones, DnaJ, DnaK, GrpE, GroEL, GroES and ATP. Fluorescence parameters (quantum yield, anisotropy and the emission maximum) of ribosome-bound coumarin-labeled rhodanese are affected differentially by addition of the chaperones individually or sequentially. Rhodanese released from the ribosomes in the presence of all chaperones (enzymatically active) differs in fluorescence properties from rhodanese released by GroES or DnaK only or by puromycin (enzymatically inactive) indicating a difference in conformation. Using sparsomycin, an inhibitor of the peptidyl transferase reaction, full-length rhodanese can be trapped on the ribosomes. A ribosome-bound intermediate formed by DnaJ or DnaJ plus DnaK was demonstrated by the effect of these chaperones on fluorescence spectra resulting from binding of anticoumarin antibodies to the N terminus of newly synthesized rhodanese. The results support the hypothesis that folding of nascent proteins can take place on the ribosome.

摘要

在无细胞大肠杆菌系统中通过偶联转录/翻译合成了荧光标记的硫氰酸酶。香豆素的一种衍生物在多肽的N端共翻译掺入。孵育过程中从核糖体释放的分子具有酶活性;然而,持续孵育会导致无酶活性的全长硫氰酸酶多肽在核糖体上积累。在添加伴侣蛋白DnaJ、DnaK、GrpE、GroEL、GroES和ATP的情况下,这些多肽可以被激活并释放。单独或依次添加伴侣蛋白会对核糖体结合的香豆素标记的硫氰酸酶的荧光参数(量子产率、各向异性和发射最大值)产生不同影响。在所有伴侣蛋白存在下从核糖体释放的硫氰酸酶(具有酶活性)与仅由GroES或DnaK或由嘌呤霉素释放的硫氰酸酶(无酶活性)的荧光特性不同,这表明构象存在差异。使用肽基转移酶反应抑制剂稀疏霉素,可以将全长硫氰酸酶捕获在核糖体上。通过这些伴侣蛋白对由抗香豆素抗体与新合成的硫氰酸酶N端结合产生的荧光光谱的影响,证明了由DnaJ或DnaJ加DnaK形成的核糖体结合中间体。结果支持了新生蛋白质折叠可以在核糖体上发生的假说。

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