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转醛醇酶在菜豆黄单胞菌菜豆致病变种中对甲萘醌毒性具有保护作用。

Transaldolase exhibits a protective role against menadione toxicity in Xanthomonas campestris pv. phaseoli.

作者信息

Vatanaviboon Paiboon, Varaluksit Tanutra, Seeanukun Chotirote, Mongkolsuk Skorn

机构信息

Laboratory of Biotechnology, Chulabhorn Research Institute, Lak Si, Bangkok 10210, Thailand.

出版信息

Biochem Biophys Res Commun. 2002 Oct 4;297(4):968-73. doi: 10.1016/s0006-291x(02)02329-x.

Abstract

A talA gene encoded transaldolase, a rate-limiting enzyme in the non-oxidative branch of the pentose-phosphate pathway, was cloned from Xanthomonas campestris pv. phaseoli. talA located in a region of the bacterial genome rich in genes involved in oxidative stress protection and regulation. TalA from X. campestris pv. phaseoli showed a high degree of homology to many previously reported transaldolases from both prokaryotic and eukaryotic sources. The expression of X. campestris pv. phaseoli talA was high at log-phase of growth, then declined at stationary phase, and could not be induced by oxidants. A talA mutant constructed by insertional inactivation did not possess any detectable transaldolase activity. Lack of a functional talA gene did not affect bacterial growth in a rich medium containing glucose or sucrose as a carbon source. However, the talA knockout mutant showed increased sensitivity to the superoxide generator menadione, but not to other oxidants. This increased menadione sensitivity phenotype could be complemented by expression of talA in a plasmid vector. The data demonstrated a novel and essential role of transaldolase in protection against menadione toxicity in X. campestris.

摘要

从野油菜黄单胞菌菜豆致病变种中克隆出一个编码转醛醇酶(戊糖磷酸途径非氧化分支中的限速酶)的talA基因。talA位于细菌基因组中一个富含参与氧化应激保护和调控基因的区域。野油菜黄单胞菌菜豆致病变种的TalA与许多先前报道的来自原核和真核生物的转醛醇酶具有高度同源性。野油菜黄单胞菌菜豆致病变种talA的表达在生长对数期较高,然后在稳定期下降,并且不能被氧化剂诱导。通过插入失活构建的talA突变体不具有任何可检测到的转醛醇酶活性。缺乏功能性talA基因并不影响细菌在以葡萄糖或蔗糖作为碳源的丰富培养基中的生长。然而,talA基因敲除突变体对超氧化物产生剂甲萘醌表现出增加的敏感性,但对其他氧化剂不敏感。这种增加的甲萘醌敏感性表型可以通过在质粒载体中表达talA来互补。数据表明转醛醇酶在野油菜黄单胞菌中对甲萘醌毒性的保护作用中具有新的重要作用。

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