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植物转化酶/果胶甲酯酶抑制剂超家族

The Plant Invertase/Pectin Methylesterase Inhibitor Superfamily.

作者信息

Coculo Daniele, Lionetti Vincenzo

机构信息

Dipartimento di Biologia e Biotecnologie "C. Darwin", Sapienza Università di Roma, Rome, Italy.

出版信息

Front Plant Sci. 2022 Mar 25;13:863892. doi: 10.3389/fpls.2022.863892. eCollection 2022.

Abstract

Invertases (INVs) and pectin methylesterases (PMEs) are essential enzymes coordinating carbohydrate metabolism, stress responses, and sugar signaling. INVs catalyzes the cleavage of sucrose into glucose and fructose, exerting a pivotal role in sucrose metabolism, cellulose biosynthesis, nitrogen uptake, reactive oxygen species scavenging as well as osmotic stress adaptation. PMEs exert a dynamic control of pectin methylesterification to manage cell adhesion, cell wall porosity, and elasticity, as well as perception and signaling of stresses. INV and PME activities can be regulated by specific proteinaceous inhibitors, named INV inhibitors (INVIs) and PME Inhibitors (PMEIs). Despite targeting different enzymes, INVIs and PMEIs belong to the same large protein family named "Plant Invertase/Pectin Methylesterase Inhibitor Superfamily." INVIs and PMEIs, while showing a low aa sequence identity, they share several structural properties. The two inhibitors showed mainly alpha-helices in their secondary structure and both form a non-covalent 1:1 complex with their enzymatic counterpart. Some PMEI members are organized in a gene cluster with specific PMEs. Although the most important physiological information was obtained in , there are now several characterized INVI/PMEIs in different plant species. This review provides an integrated and updated overview of this fascinating superfamily, from the specific activity of characterized isoforms to their specific functions in plant physiology. We also highlight INVI/PMEIs as biotechnological tools to control different aspects of plant growth and defense. Some isoforms are discussed in view of their potential applications to improve industrial processes. A review of the nomenclature of some isoforms is carried out to eliminate confusion about the identity and the names of some INVI/PMEI member. Open questions, shortcoming, and opportunities for future research are also presented.

摘要

转化酶(INVs)和果胶甲基酯酶(PMEs)是协调碳水化合物代谢、应激反应和糖信号传导的关键酶。INVs催化蔗糖裂解为葡萄糖和果糖,在蔗糖代谢、纤维素生物合成、氮吸收、活性氧清除以及渗透胁迫适应中发挥关键作用。PMEs对果胶甲基酯化进行动态调控,以控制细胞粘附、细胞壁孔隙率和弹性,以及应激的感知和信号传导。INVs和PMEs的活性可由特定的蛋白质抑制剂调节,即转化酶抑制剂(INVIs)和果胶甲基酯酶抑制剂(PMEIs)。尽管作用于不同的酶,但INVIs和PMEIs属于同一个名为“植物转化酶/果胶甲基酯酶抑制剂超家族”的大蛋白家族。INVIs和PMEIs虽然氨基酸序列同一性较低,但它们具有一些共同的结构特性。这两种抑制剂在二级结构中主要呈现α螺旋,并且都与它们的酶对应物形成非共价的1:1复合物。一些PMEI成员与特定的PMEs一起组成基因簇。尽管最重要的生理信息是在……中获得的,但现在不同植物物种中已有几种已鉴定的INVI/PMEIs。本综述提供了这个迷人超家族的综合且最新的概述,从已鉴定异构体的特定活性到它们在植物生理学中的特定功能。我们还强调INVI/PMEIs作为控制植物生长和防御不同方面的生物技术工具。鉴于它们在改善工业过程中的潜在应用,对一些异构体进行了讨论。对一些异构体的命名法进行了综述,以消除对一些INVI/PMEI成员的身份和名称的混淆。还提出了未来研究的开放性问题、缺点和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5950/8990755/106805c494be/fpls-13-863892-g001.jpg

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