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首页> 外文期刊>Archives of microbiology >Carotenoid biosynthesis in Gloeobacter violaceus PCC4721 involves a single crtI-type phytoene desaturase instead of typical cyanobacterial enzymes
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Carotenoid biosynthesis in Gloeobacter violaceus PCC4721 involves a single crtI-type phytoene desaturase instead of typical cyanobacterial enzymes

机译:紫球藻PCC4721中的类胡萝卜素生物合成涉及单个crtI型八氢番茄红素去饱和酶,而不是典型的蓝细菌酶

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Gloeobacter violaceus is a cyanobacterium isolated from other groups by lack of thylakoids and unique structural features of its photosynthetic protein complexes. Carotenoid biosynthesis has been investigated with respect to the carotenoids formed and the genes and enzymes involved. Carotenoid analysis identified beta-carotene as major carotenoid and echinenone as a minor component. This composition is quite unique and the cellular amounts are up to 10-fold lower than in other unicellular cyanobacteria. Carotenoid biosynthesis is up-regulated in a light-dependent manner. This enhanced biosynthesis partially compensates for photooxidation especially of beta-carotene. The sequenced genome of G. violaceus was analyzed and several gene candidates homologous to carotenogenic genes from other organisms obtained. Functional expression of all candidates and complementation in Escherichia coli led to the identification of all genes involved in the biosynthesis of the G. violaceus carotenoids with the exception of the lycopene cyclase gene. An additional diketolase gene was found that functioned in E. coli but is silent in G. violaceus cells. The biggest difference from all other cyanobacteria is the existence of a single bacterial-type 4-step desaturase instead of the poly cis cyanobacterial desaturation pathway catalyzed by two cyanobacterial-type desaturases and an isomerase. The genes for these three enzymes are absent in G. violaceus.
机译:紫罗兰杆菌是一种由于缺乏类囊体和其光合蛋白复合物独特的结构特征而从其他群体中分离出来的蓝细菌。关于形成的类胡萝卜素以及涉及的基因和酶,已经研究了类胡萝卜素的生物合成。类胡萝卜素分析确定β-胡萝卜素为主要类胡萝卜素,而chin烯酮为次要成分。这种组成是非常独特的,细胞数量比其他单细胞蓝细菌最多低10倍。类胡萝卜素的生物合成以光依赖性方式上调。这种增强的生物合成部分补偿了光氧化作用,尤其是β-胡萝卜素的光氧化作用。分析了紫堇菌的测序基因组,并获得了与其他生物的类胡萝卜素基因同源的几种候选基因。除了大肠杆菌中的番茄红素环化酶基因外,所有候选基因的功能表达和在大肠杆菌中的互补作用都导致鉴定出了与紫堇菜类胡萝卜素生物合成有关的所有基因。发现了另外一种双酮醇酶基因,该基因在大肠杆菌中起作用,但在紫胶菌细胞中沉默。与所有其他蓝细菌的最大区别在于,存在单个细菌型4步去饱和酶,而不是由两个蓝细菌型去饱和酶和异构酶催化的多顺式蓝细菌去饱和途径。这三种酶的基因不存在于紫薇中。

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