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亚基相互作用以及luxA多肽在重组荧光素酶杂交体中控制热稳定性和催化特性方面的作用。

Subunit interactions and the role of the luxA polypeptide in controlling thermal stability and catalytic properties in recombinant luciferase hybrids.

作者信息

Li Z, Szittner R, Meighen E A

机构信息

Department of Biochemistry, McGill University Montreal, Canada.

出版信息

Biochim Biophys Acta. 1993 Oct 3;1158(2):137-45. doi: 10.1016/0304-4165(93)90007-u.

Abstract

Bacterial luciferases with over 70% sequence identity from the terrestrial species, Xenorhabdus luminescens, and the marine species, Vibrio harveyi, exhibit large differences in thermal stability (Szittner and Meighen, 1990, J. Biol. Chem. 265, 16581-16587). The origin of these differences was investigated with genetically constructed hybrids containing one subunit from X. luminescens and the other from V. harveyi. While no activity was detected with the single (alpha and beta) subunits both in vitro and in vivo, the recombinant hybrid luciferases (alpha Xl beta Vh and alpha Vh beta Xh) were highly active and could be purified to homogeneity. The kinetic properties of the hybrid enzymes including aldehyde specificity, flavin binding and luminescence decay rates, were found to be nearly identical to those of the native luciferases (alpha Xl beta Xl or alpha Vh beta Vh) containing the same alpha subunit. In addition, the rate of thermal inactivation and temperature dependent quenching of the intrinsic fluorescence by flavin were found to be independent of the nature of the beta subunit, quite opposite to previous reports that the thermal stability is controlled by the beta subunit. Thus, the alpha subunit appears primarily responsible for controlling both the catalytic and structural properties of luciferase.

摘要

来自陆生物种发光异小杆线虫(Xenorhabdus luminescens)和海洋物种哈维氏弧菌(Vibrio harveyi)的细菌荧光素酶,序列同一性超过70%,但其热稳定性却存在很大差异(齐特纳和梅根,1990年,《生物化学杂志》265卷,16581 - 16587页)。利用基因构建的杂种对这些差异的起源进行了研究,这些杂种包含一个来自发光异小杆线虫的亚基和另一个来自哈维氏弧菌的亚基。虽然在体外和体内对单个(α和β)亚基均未检测到活性,但重组杂种荧光素酶(αXlβVh和αVhβXh)具有高活性,并且可以纯化至同质。发现杂种酶的动力学特性,包括醛特异性、黄素结合和发光衰减率,与含有相同α亚基的天然荧光素酶(αXlβXl或αVhβVh)几乎相同。此外,发现热失活速率和黄素对内在荧光的温度依赖性猝灭与β亚基的性质无关,这与之前关于热稳定性由β亚基控制的报道截然相反。因此,α亚基似乎主要负责控制荧光素酶的催化和结构特性。

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