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首页> 外文期刊>FEBS Letters >Sucrose metabolism: Anabaena sucrose‐phosphate synthase and sucrose‐phosphate phosphatase define minimal functional domains shuffled during evolution
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Sucrose metabolism: Anabaena sucrose‐phosphate synthase and sucrose‐phosphate phosphatase define minimal functional domains shuffled during evolution

机译:蔗糖代谢:鱼腥藻蔗糖磷酸合酶和蔗糖磷酸磷酸酶定义了进化过程中改组的最小功能域

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摘要

>Based on the functional characterization of sucrose biosynthesis related proteins [SBP: sucrose-phosphate synthase (SPS), sucrose-phosphate phosphatase (SPP), and sucrose synthase (SuS)] in Anabaena sp. PCC7120 and sequence analysis, we have shown that SBP are restricted to cyanobacterium species and plants, and that they are multidomain proteins with modular architecture. Anabaena SPS, a minimal catalytic SPS unit, defines a glucosyltransferase domain present in all SPSs and SuSs. Similarly, Anabaena SPP defines a phosphohydrolase domain characteristic of all SPPs and some SPSs. Phylogenetic analysis points towards the evolution of modern cyanobacterial and plant SBP from a bidomainal common ancestral SPS-like gene.
机译:>基于 Anabaena sp。中蔗糖生物合成相关蛋白[SBP:蔗糖磷酸合成酶(SPS),蔗糖磷酸磷酸酶(SPP)和蔗糖合成酶(SuS)]的功能表征。 PCC7120和序列分析显示,SBP仅限于蓝藻物种和植物,并且它们是具有模块化结构的多域蛋白。 Anabaena SPS是最小的SPS催化单元,定义了所有SPS和SuS中都存在的葡萄糖基转移酶结构域。同样, Anabaena SPP定义了所有SPP和某些SPS的磷酸水解酶结构域特征。系统发育分析指出现代蓝细菌和植物SBP从双域共同祖先SPS样基因的演变。

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