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色素生物合成基因和反应中心蛋白的超操纵子组织是荚膜红细菌中的一个保守特征:重叠的bchB和puhA转录本分析。

The superoperonal organization of genes for pigment biosynthesis and reaction center proteins is a conserved feature in Rhodobacter capsulatus: analysis of overlapping bchB and puhA transcripts.

作者信息

Bauer C E, Buggy J J, Yang Z M, Marrs B L

机构信息

Department of Biology, Indiana University, Bloomington 47405.

出版信息

Mol Gen Genet. 1991 Sep;228(3):433-44. doi: 10.1007/BF00260637.

DOI:10.1007/BF00260637
PMID:1896013
Abstract

Most of the essential biosynthetic and structural genes involved in bacterial photosynthesis are clustered in a 46 kb region of the Rhodobacter capsulatus genome. Previous analyses have demonstrated that the puf operon, which encodes light harvesting and reaction center structural genes as well as a regulatory gene for bacteriochlorophyll biosynthesis, is expressed from a complex set of overlapping transcripts. Differential initiation and processing of these transcripts is thought to be involved in regulating expression of puf-encoded genes. In this study we demonstrate that the puh operon, which is located 39 kb away from the puf operon, also contains overlapping transcripts. One large 11 kb puhA transcript is shown to be a product of read-through from an upstream operon (bchB) which encodes numerous bacteriochlorophyll biosynthesis genes. A second 1.1 kb mRNA is shown to be derived from the 11 kb bchB transcript by processing and a third, highly expressed, 0.95 kb transcript is shown to be initiated from a promoter located within the distal gene of the bchB operon. The occurrence of overlapping transcripts for the puf and puh operons was further shown to influence development of the photochemical apparatus during conditions of environmental shifts in oxygen tension. Evidence for the occurrence of a "superoperonal" organization of overlapping operons in several different species of purple photosynthetic bacteria is discussed.

摘要

参与细菌光合作用的大多数必需生物合成和结构基因聚集在荚膜红细菌基因组的一个46 kb区域内。先前的分析表明,puf操纵子编码光捕获和反应中心结构基因以及细菌叶绿素生物合成的调控基因,它由一组复杂的重叠转录本表达。这些转录本的差异起始和加工被认为参与调节puf编码基因的表达。在本研究中,我们证明位于距puf操纵子39 kb处的puh操纵子也包含重叠转录本。一个11 kb的大puhA转录本被证明是来自上游操纵子(bchB)通读的产物,该上游操纵子编码许多细菌叶绿素生物合成基因。第二个1.1 kb的mRNA被证明是通过加工从11 kb的bchB转录本衍生而来,第三个高表达的0.95 kb转录本被证明是从位于bchB操纵子远端基因内的一个启动子起始的。puf和puh操纵子重叠转录本的出现进一步表明在氧张力环境变化条件下会影响光化学装置的发育。本文还讨论了几种不同紫色光合细菌中重叠操纵子“超级操纵子”组织存在的证据。

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The superoperonal organization of genes for pigment biosynthesis and reaction center proteins is a conserved feature in Rhodobacter capsulatus: analysis of overlapping bchB and puhA transcripts.色素生物合成基因和反应中心蛋白的超操纵子组织是荚膜红细菌中的一个保守特征:重叠的bchB和puhA转录本分析。
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