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解析红假单胞菌 HemA 和 HemT 5-氨基酮戊酸合酶的作用。

Resolving the roles of the Rhodobacter sphaeroides HemA and HemT 5-aminolevulinic acid synthases.

机构信息

Department of Biological Sciences, Bowling Green State University, Bowling Green, OH, USA.

出版信息

Mol Microbiol. 2018 Dec;110(6):1011-1029. doi: 10.1111/mmi.14133. Epub 2018 Oct 21.

Abstract

Strains of the phototrophic alpha-proteobacterium Rhodobacter sphaeroides vary in the number of enzymes catalyzing the formation of 5-aminolevulinic acid (ALA synthases) that are encoded in their genomes. All have hemA, but not all have hemT. This study compared transcription of these genes, and also properties of their products among three wild-type strains; 2.4.3 has hemA alone, 2.4.1 and 2.4.9 have both hemA and hemT. Using lacZ reporter plasmids all hemA genes were found to be upregulated under anaerobic conditions, but induction amplitudes differ. hemT is transcriptionally silent in 2.4.1 but actively transcribed in 2.4.9, and strongly upregulated under anaerobic-dark growth conditions when cells are respiring dimethyl sulfoxide, vs. aerobic-dark or phototrophic (anaerobic-light) conditions. Two extracytoplasmic function (ECF)-type sigma factors present in 2.4.9, but absent from 2.4.1 are directly involved in hemT transcription. Kinetic properties of the ALA synthases of all three strains were similar, but HemT enzymes are far less sensitive to feedback inhibition by hemin than HemA enzymes, and HemT is less active under oxidizing conditions. A model is presented that compares and contrast events in strains 2.4.1 and 2.4.9.

摘要

光养α变形菌红假单胞菌的菌株在其基因组中编码的 5-氨基酮戊酸(ALA 合酶)形成的酶的数量上有所不同。所有菌株都有 hemA,但并非所有菌株都有 hemT。本研究比较了这些基因的转录情况,以及三种野生型菌株中它们产物的特性;2.4.3 仅有 hemA,2.4.1 和 2.4.9 则同时具有 hemA 和 hemT。使用 lacZ 报告质粒,所有 hemA 基因在厌氧条件下均被上调,但诱导幅度不同。hemT 在 2.4.1 中转录沉默,但在 2.4.9 中活跃转录,并且在细胞呼吸二甲亚砜时,在厌氧黑暗生长条件下强烈上调,而在好氧黑暗或光养(厌氧光照)条件下则没有。存在于 2.4.9 但不存在于 2.4.1 中的两种细胞外功能(ECF)型σ因子直接参与 hemT 的转录。所有三种菌株的 ALA 合酶的动力学特性相似,但 HemT 酶对血红素的反馈抑制远不如 HemA 酶敏感,并且在氧化条件下活性较低。提出了一个模型,比较和对比了 2.4.1 和 2.4.9 菌株中的事件。

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