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嗜尸生玻瓶菌DW中的血红蛋白生物合成:一种细菌珠蛋白基因新同源物的克隆、表达及特性分析

Hemoglobin biosynthesis in Vitreoscilla stercoraria DW: cloning, expression, and characterization of a new homolog of a bacterial globin gene.

作者信息

Joshi M, Mande S, Dikshit K L

机构信息

Institute of Microbial Technology, Chandigarh-160014, India.

出版信息

Appl Environ Microbiol. 1998 Jun;64(6):2220-8. doi: 10.1128/AEM.64.6.2220-2228.1998.

Abstract

In the strictly aerobic, gram-negative bacterium Vitreoscilla strain C1, oxygen-limited growth conditions create a more than 50-fold increase in the expression of a homodimeric heme protein which was recognized as the first bacterial hemoglobin (Hb). The recently determined crystal structure of Vitreoscilla Hb has indicated that the heme pocket of microbial globins differs from that of eukaryotic Hbs. In an attempt to understand the diverse functions of Hb-like proteins in prokaryotes, we have cloned and characterized the gene (vgb) encoding an Hb-like protein from another strain of Vitreoscilla, V. stercoraria DW. Several silent changes were observed within the coding region of the V. stercoraria vgb gene. Apart from that, V. stercoraria Hb exhibited interesting differences between the A and E helices. Compared to its Hb counterpart from Vitreoscilla strain C1, the purified preparation of V. stercoraria Hb displays a slower autooxidation rate. The differences between Vitreoscilla Hb and V. stercoraria Hb were mapped onto the three-dimensional structure of Vitreoscilla Hb, which indicated that the four changes, namely, Ile7Val, Ile9Thr, Ile10Ser, and Leu62Val, present within the V. stercoraria Hb fall in the region where the A and E helices contact each other. Therefore, alteration in the relative orientation of the A and E helices and the corresponding conformational change in the heme binding pocket of V. stercoraria Hb can be correlated to its slower autooxidation rate. In sharp contrast to the oxygen-regulated biosynthesis of Hb in Vitreoscilla strain C1, production of Hb in V. stercoraria has been found to be low and independent of oxygen control, which is supported by the absence of a fumarate and nitrate reductase regulator box within the V. stercoraria vgb promoter region. Thus, the regulation mechanisms of the Hb-encoding gene appear to be quite different in the two closely related species of Vitreoscilla. The relatively slower autooxidation rate of V. stercoraria Hb, lack of oxygen sensitivity, and constitutive production of Hb suggest that it may have some other function(s) in the cellular physiology of V. stercoraria DW, together with facilitated oxygen transport, predicted for earlier reported Vitreoscilla Hb.

摘要

在严格需氧的革兰氏阴性细菌玻璃丝菌属菌株C1中,氧气受限的生长条件会使一种同二聚体血红素蛋白的表达增加50多倍,该蛋白被认为是首个细菌血红蛋白(Hb)。最近测定的玻璃丝菌血红蛋白的晶体结构表明,微生物球蛋白的血红素口袋与真核血红蛋白的不同。为了理解原核生物中类血红蛋白蛋白的多种功能,我们克隆并鉴定了来自玻璃丝菌属另一菌株——粪玻璃丝菌DW的一种类血红蛋白蛋白的编码基因(vgb)。在粪玻璃丝菌vgb基因的编码区内观察到了几处沉默变化。除此之外,粪玻璃丝菌血红蛋白在A螺旋和E螺旋之间表现出有趣的差异。与玻璃丝菌属菌株C1的血红蛋白相比,纯化后的粪玻璃丝菌血红蛋白制剂显示出自氧化速率较慢。玻璃丝菌血红蛋白和粪玻璃丝菌血红蛋白之间的差异被映射到玻璃丝菌血红蛋白的三维结构上,这表明粪玻璃丝菌血红蛋白中存在的四个变化,即Ile7Val、Ile9Thr、Ile10Ser和Leu62Val,位于A螺旋和E螺旋相互接触的区域。因此,粪玻璃丝菌血红蛋白中A螺旋和E螺旋相对取向的改变以及血红素结合口袋相应的构象变化可能与其较慢的自氧化速率相关。与玻璃丝菌属菌株C1中血红蛋白受氧气调节的生物合成形成鲜明对比的是,已发现粪玻璃丝菌中血红蛋白的产生量较低且不受氧气控制,粪玻璃丝菌vgb启动子区域内不存在富马酸盐和硝酸盐还原酶调节盒支持了这一点。因此,在这两种密切相关的玻璃丝菌属物种中,血红蛋白编码基因的调控机制似乎有很大不同。粪玻璃丝菌血红蛋白相对较慢的自氧化速率、缺乏氧气敏感性以及血红蛋白的组成型产生表明,它在粪玻璃丝菌DW的细胞生理中可能具有一些其他功能,与较早报道的玻璃丝菌血红蛋白所预测的促进氧气运输功能一起。

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