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Cyanobacterial alkalineeutral invertases. Origin of sucrose hydrolysis in the plant cytosol?

机译:蓝细菌碱性/中性转化酶。植物细胞质中蔗糖水解的起源?

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The aim of this work was to investigate the occurrence of invertase (Inv) in cyanobacteria. We describe the first isolation and characterization of prokaryotic alkalineeutral Inv (A/N-Inv) genes. Two genes (invA and invB) were identified in Anabaena sp. PCC 7120, which share about 50–56% identity with plant A/N-Inv and encode proteins of about 53–55 kDa. The identification of these proteins was confirmed by biochemical and immunological studies with recombinant proteins and with the enzymes isolated from Anabaena cells. Expression analysis supported the important role of A/N-Inv in nitrogen-fixing growth conditions. Nevertheless, A/N-Inv activities were shown in all filamentous and unicellular cyanobacteria investigated, regardless of their capacity to fix dinitrogen. Searches in complete sequenced genomes showed that A/N-Inv homologues are restricted to cyanobacterial species and plants. In particular, filamentous nitrogen-fixing strains display two A/N-Inv genes and unicellular strains have only one. Phylogenetic analysis leads us to suggest that modern plant A/N-Inv might have originated from an orthologous ancestral gene after the endosymbiotic origin of chloroplasts.
机译:这项工作的目的是调查蓝细菌中转化酶(Inv)的发生。我们描述了原核碱性/中性Inv(A / N-Inv)基因的首次分离和表征。在鱼腥藻中鉴定出两个基因(invA和invB)。 PCC 7120与植物A / N-Inv具有大约50-56%的同一性,编码的蛋白质约为53-55 kDa。通过重组蛋白和从鱼腥藻细胞分离的酶的生化和免疫学研究,证实了这些蛋白的鉴定。表达分析支持A / N-Inv在固氮生长条件中的重要作用。尽管如此,在所研究的所有丝状和单细胞蓝细菌中均显示了A / N-Inv活性,无论它们固定二氮的能力如何。对完整测序基因组的搜索显示,A / N-Inv同源物仅限于蓝细菌物种和植物。尤其是,丝状固氮菌株显示两个A / N-Inv基因,单细胞菌株只有一个。系统发育分析表明,现代植物A / N-Inv可能起源于叶绿体内共生后的直系祖先基因。

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