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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >The Cinderella story of sucrose hydrolysis: Alkalineeutral invertases, from cyanobacteria to unforeseen roles in plant cytosol and organelles
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The Cinderella story of sucrose hydrolysis: Alkalineeutral invertases, from cyanobacteria to unforeseen roles in plant cytosol and organelles

机译:蔗糖水解的灰姑娘故事:碱性/中性转化酶,从蓝细菌到植物细胞质和细胞器中不可预见的作用

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Over the past decades, considerable advances have been made in understanding the crucial role of sucrose and the regulation of its metabolism in plant life. Recent studies in cyanobacteria and the analysis of several genomic sequences point towards an ancient origin of plant sucrose metabolism before the cyanobacterial phylogenetic radiation. In agreement with the generally accepted cyanobacterial endosymbiotic origin of plant chloroplasts, most of the cyanobacterial genes were transferred to the nucleus and their protein products were preferentially re-imported to the plant organelle. In the case of sucrose metabolism, the enzymes sucrose-phosphate synthase (SPS) and sucrose-phosphate phosphatase (SPP), responsible of the disaccharide synthesis, and sucrose synthase (SuS) and alkalineeutral invertases (A/N-Inv), involved in sucrose cleavage, appear to have a cyanobacterial origin. However, whereas SPS and SPP are likely to be exclusively localized in the cytosol of modern plant cells, SuS and A/N-Inv isoforms are distributed between the cytosol and different subcellular locations. Particularly, A/N-Invs are the least studied proteins of sucrose catabolism. They were somewhat underestimated, and thought to play no relevant role in carbon metabolism. However, some striking recent findings about the presence of A/N-Inv forms inside plant organelles, as well as the description of novel physiological functions, led us to re-evaluate the importance of these Cinderella enzymes. The additional roles uncovered for A/N-Invs disclose new scenarios for the interconnection between the cytosol and organelles and for complex crosstalk signalling pathways.
机译:在过去的几十年中,在理解蔗糖在植物生命中的关键作用及其代谢调控方面取得了长足的进步。蓝细菌的最新研究以及对几种基因组序列的分析指出,在蓝细菌系统发生辐射之前,植物蔗糖代谢的古老起源。与普遍接受的植物叶绿体的蓝细菌内共生起源一致,大多数蓝细菌基因被转移至细胞核,其蛋白产物优先被重新导入植物细胞器。在蔗糖代谢的情况下,负责双糖合成的酶蔗糖磷酸合酶(SPS)和蔗糖磷酸磷酸酶(SPP),以及蔗糖合酶(SuS)和碱性/中性转化酶(A / N-Inv),参与蔗糖裂解的分子似乎具有蓝细菌的来源。但是,尽管SPS和SPP可能仅局限在现代植物细胞的细胞质中,但SuS和A / N-Inv同工型却分布在细胞质和不同的亚细胞位置之间。特别地,A / N-Inv是蔗糖分解代谢中研究最少的蛋白质。他们有些被低估了,并认为在碳代谢中没有任何相关作用。然而,有关植物细胞器内部存在A / N-Inv形式的一些惊人发现,以及对新型生理功能的描述,促使我们重新评估了这些灰姑娘酶的重要性。为A / N-Invs发现的其他角色揭示了胞质与细胞器之间相互连接以及复杂的串扰信号通路的新情况。

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