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bchFNBH bacteriochlorophyll synthesis genes of Rhodobacter capsulatus and identification of the third subunit of light-independent protochlorophyllide reductase in bacteria and plants.荚膜红细菌的细菌叶绿素合成基因bchFNBH以及细菌和植物中不依赖光的原叶绿素酸酯还原酶第三个亚基的鉴定。
J Bacteriol. 1993 Apr;175(8):2414-22. doi: 10.1128/jb.175.8.2414-2422.1993.
2
Reconstitution of light-independent protochlorophyllide reductase from purified bchl and BchN-BchB subunits. In vitro confirmation of nitrogenase-like features of a bacteriochlorophyll biosynthesis enzyme.从纯化的细菌叶绿素(bchl)和BchN - BchB亚基重建不依赖光的原叶绿素酸酯还原酶。细菌叶绿素生物合成酶类固氮酶特征的体外验证。
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A prokaryotic origin for light-dependent chlorophyll biosynthesis of plants.植物光依赖型叶绿素生物合成的原核起源。
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Chloroplast-encoded chlB is required for light-independent protochlorophyllide reductase activity in Chlamydomonas reinhardtii.莱茵衣藻中,叶绿体编码的chlB对于不依赖光的原叶绿素酸酯还原酶活性是必需的。
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The Rhodobacter capsulatus chlorin reductase-encoding locus, bchA, consists of three genes, bchX, bchY, and bchZ.红假单胞菌叶绿素还原酶编码基因座bchA由三个基因bchX、bchY和bchZ组成。
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Chloroplast chlB gene is required for light-independent chlorophyll accumulation in Chlamydomonas reinhardtii.莱茵衣藻中光独立叶绿素积累需要叶绿体chlB基因。
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Light-independent chlorophyll biosynthesis: involvement of the chloroplast gene chlL (frxC).不依赖光的叶绿素生物合成:叶绿体基因chlL(frxC)的作用
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Identification of the chlB gene and the gene product essential for the light-independent chlorophyll biosynthesis in the cyanobacterium Plectonema boryanum.钝顶螺旋藻中与不依赖光的叶绿素生物合成所必需的chlB基因及其基因产物的鉴定。
Plant Cell Physiol. 1996 Apr;37(3):313-23. doi: 10.1093/oxfordjournals.pcp.a028948.
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Reconstitution of a sequential reaction of two nitrogenase-like enzymes in the bacteriochlorophyll biosynthetic pathway of Rhodobacter capsulatus.重组红细菌囊泡藻生物固氮途径中两种类似氮酶的酶的级联反应。
Biochem Biophys Res Commun. 2014 May 30;448(2):200-5. doi: 10.1016/j.bbrc.2014.04.087. Epub 2014 Apr 24.

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Novel Insights into the Enzymology, Regulation and Physiological Functions of Light-dependent Protochlorophyllide Oxidoreductase in Angiosperms.被子植物中依赖光的原叶绿素酸酯氧化还原酶的酶学、调控及生理功能的新见解
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8
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POR C of Arabidopsis thaliana: a third light- and NADPH-dependent protochlorophyllide oxidoreductase that is differentially regulated by light.拟南芥的POR C:一种受光差异调节的、依赖光和NADPH的第三种原叶绿素酸酯氧化还原酶。
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10
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本文引用的文献

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荚膜红细菌的细菌叶绿素合成基因bchFNBH以及细菌和植物中不依赖光的原叶绿素酸酯还原酶第三个亚基的鉴定。

bchFNBH bacteriochlorophyll synthesis genes of Rhodobacter capsulatus and identification of the third subunit of light-independent protochlorophyllide reductase in bacteria and plants.

作者信息

Burke D H, Alberti M, Hearst J E

机构信息

Department of Chemistry, University of California, Berkeley.

出版信息

J Bacteriol. 1993 Apr;175(8):2414-22. doi: 10.1128/jb.175.8.2414-2422.1993.

DOI:10.1128/jb.175.8.2414-2422.1993
PMID:8385667
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC204531/
Abstract

We present the nucleotide and deduced amino acid sequences of four contiguous bacteriochlorophyll synthesis genes from Rhodobacter capsulatus. Three of these genes code for enzymes which catalyze reactions common to the chlorophyll synthesis pathway and therefore are likely to be found in plants and cyanobacteria as well. The pigments accumulated in strains with physically mapped transposon insertion mutations are analyzed by absorbance and fluorescence spectroscopy, allowing us to assign the genes as bchF, bchN, bchB, and bchH, in that order. bchF encodes a bacteriochlorophyll alpha-specific enzyme that adds water across the 2-vinyl group. The other three genes are required for portions of the pathway that are shared with chlorophyll synthesis, and they were expected to be common to both pathways. bchN and bchB are required for protochlorophyllide reduction in the dark (along with bchL), a reaction that has been observed in all major groups of photosynthetic organisms except angiosperms, where only the light-dependent reaction has been clearly established. The purple bacterial and plant enzymes show 35% identity between the amino acids coded by bchN and chlN (gidA) and 49% identity between the amino acids coded by bchL and chlL (frxC). Furthermore, bchB is 33% identical to ORF513 from the Marchantia polymorpha chloroplast. We present arguments in favor of the probable role of ORF513 (chlB) in protochlorophyllide reduction in the dark. The further similarities of all three subunits of protochlorophyllide reductase and the three subunits of chlorin reductase in bacteriochlorophyll synthesis suggest that the two reductase systems are derived from a common ancestor.

摘要

我们展示了来自荚膜红细菌的四个相邻细菌叶绿素合成基因的核苷酸序列和推导的氨基酸序列。其中三个基因编码催化叶绿素合成途径中常见反应的酶,因此很可能也存在于植物和蓝细菌中。通过吸光度和荧光光谱分析了具有物理定位转座子插入突变的菌株中积累的色素,从而使我们能够依次将这些基因指定为bchF、bchN、bchB和bchH。bchF编码一种细菌叶绿素α特异性酶,该酶在2-乙烯基上加水。该途径中与叶绿素合成共享的部分需要其他三个基因,预计这两个途径共有这些基因。黑暗中原叶绿素酸酯还原需要bchN和bchB(以及bchL),除被子植物外,在所有主要光合生物类群中都观察到了这一反应,在被子植物中仅明确确立了光依赖反应。紫色细菌和植物的酶在bchN和chlN(gidA)编码的氨基酸之间显示出35%的同一性,在bchL和chlL(frxC)编码的氨基酸之间显示出49%的同一性。此外,bchB与多歧藻叶绿体的ORF513有33%的同一性。我们提出了支持ORF513(chlB)在黑暗中原叶绿素酸酯还原中可能作用的论据。细菌叶绿素合成中原叶绿素酸酯还原酶的所有三个亚基与二氢卟吩还原酶的三个亚基的进一步相似性表明,这两个还原酶系统起源于一个共同的祖先。