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Cloning, 3D Modeling and Expression Analysis of Three Vacuolar Invertase Genes from Cassava (Manihot Esculenta Crantz)

机译:木薯三个脉泡转化酶基因的克隆,3D建模和表达分析

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Vacuolar invertase is one of the key enzymes in sucrose metabolism that irreversibly catalyzes the hydrolysis of sucrose to glucose and fructose in plants. In this research, three vacuolar invertase genes, named MeVINV1-3, and with 653, 660 and 639 amino acids, respectively, were cloned from cassava. The motifs of NDPNG (β- fructosidase motif), RDP and WECVD, which are conserved and essential for catalytic activity in the vacuolar invertase family, were found in MeVINV1 and MeVINV2. Meanwhile, in MeVINV3, instead of NDPNG we found the motif NGPDG, in which the three amino acids GPD are different from those in other vacuolar invertases (DPN) that might result in MeVINV3 being an inactivated protein. The N-terminal leader sequence of MeVINVs contains a signal anchor, which is associated with the sorting of vacuolar invertase to vacuole. The overall predicted 3D structure of the MeVINVs consists of a five bladed β-propeller module at N-terminus domain, and forms a β-sandwich module at the C-terminus domain. The active site of the protein is situated in the β-propeller module. MeVINVs are classified in two subfamilies, α and β groups, in which α group members of MeVINV1 and 2 are highly expressed in reproductive organs and tuber roots (considered as sink organs), while β group members of MeVINV3 are highly expressed in leaves (source organs). All MeVINVs are highly expressed in leaves, while only MeVINV1 and 2 are highly expressed in tubers at cassava tuber maturity stage. Thus, MeVINV1 and 2 play an important role in sucrose unloading and starch accumulation, as well in buffering the pools of sucrose, hexoses and sugar phosphates in leaves, specifically at later stages of plant development.
机译:泡状转化酶是蔗糖代谢中的关键酶之一,不可逆地催化蔗糖水解为植物中的葡萄糖和果糖。在这项研究中,从木薯中克隆了三个名为MeVINV1-3的液泡转化酶基因,分别具有653、660和639个氨基酸。在MeVINV1和MeVINV2中发现了保守的且对于液泡转化酶家族中的催化活性必不可少的NDPNG(β-果糖苷酶基序),RDP和WECVD基序。同时,在MeVINV3中,我们发现了NGPDG,而不是NDPNG,其中三个氨基酸GPD与其他液泡转化酶(DPN)中的氨基酸不同,这可能导致MeVINV3是一种失活的蛋白质。 MeVINV的N末端前导序列包含信号锚,其与液泡转化酶至液泡的分类有关。 MeVINV的总体预测3D结构由位于N末端域的五个叶片β螺旋桨模块组成,并在C末端域形成β三明治模块。蛋白质的活性位点位于β-螺旋桨模块中。 MeVINVs分为α和β两个亚科,其中MeVINV1和2的α组成员在生殖器官和块根中高表达(被认为是沉陷器官),而MeVINV3的β组成员在叶片中高表达(来源)器官)。在木薯块茎成熟阶段,所有MeVINV在叶片中均高表达,而仅MeVINV1和2在块茎中高表达。因此,MeVINV1和MeVIN 2在蔗糖卸载和淀粉积累以及缓冲叶片中的蔗糖,己糖和糖磷酸酯库中,特别是在植物发育的后期阶段,起着重要的作用。

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