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IS50 R蛋白在Tn5转座促进与调控中的作用。

Role of the IS50 R proteins in the promotion and control of Tn5 transposition.

作者信息

Johnson R C, Reznikoff W S

出版信息

J Mol Biol. 1984 Aug 25;177(4):645-61. doi: 10.1016/0022-2836(84)90042-1.

Abstract

IS50R, the inverted repeat sequence of Tn5 which is responsible for supplying functions that promote and control Tn5 transposition, encodes two polypeptides that differ at their N terminus. Frameshift, in-frame deletion, nonsense, and missense mutations within the N terminus of protein 1 (which is not present in protein 2) were isolated and characterized. The properties of these mutations demonstrate that protein 1 is absolutely required for Tn5 transposition. None of these mutations affected the inhibitory activity of IS50, confirming that protein 2 is sufficient to mediate inhibition of Tn5 transposition. The effects on transposition of increasing the amount of protein 2 (the inhibitor) relative to protein 1 (the transposase) were also analyzed. Relatively large amounts of protein 2 were required to see a significant decrease in the transposition frequency of an element. In addition, varying the co-ordinate synthesis of the IS50 R proteins over a 30-fold range had little effect on the transposition frequency. These studies suggest that neither the wild-type synthesis rate of protein 2 relative to protein 1 nor the amount of synthesis of both IS50 R proteins is the only factor responsible for controlling the transposition frequency of a wild-type Tn5 element in Escherichia coli.

摘要

IS50R是Tn5的反向重复序列,负责提供促进和控制Tn5转座的功能,它编码两种在N端不同的多肽。分离并鉴定了蛋白质1(蛋白质2中不存在)N端的移码、框内缺失、无义突变和错义突变。这些突变的特性表明蛋白质1是Tn5转座绝对必需的。这些突变均未影响IS50的抑制活性,证实蛋白质2足以介导对Tn5转座的抑制。还分析了相对于蛋白质1(转座酶)增加蛋白质2(抑制剂)的量对转座的影响。需要相对大量的蛋白质2才能使元件的转座频率显著降低。此外,在30倍的范围内改变IS50 R蛋白的协同合成对转座频率影响很小。这些研究表明,相对于蛋白质1而言蛋白质2的野生型合成速率以及两种IS50 R蛋白的合成量都不是控制大肠杆菌中野生型Tn5元件转座频率的唯一因素。

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