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New insight into the structure and regulation of the plant vacuolar H+-ATPase

机译:对植物液泡H + -ATPase的结构和调控的新见解

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Plant cells are characterized by a highly active secretory system that includes the large central vacuole found in most differentiated tissues. The plant vacuolar H+-ATPase plays an essential role in maintaining the ionic and metabolic gradients across endomembranes, in activating transport processes and vesicle dynamics, and, hence, is indispensable for plant growth, development, and adaptation to changing environmental conditions. The review summarizes recent advances in elucidating the structure, subunit composition, localization, and regulation of plant V-ATPase. Emerging knowledge on subunit isogenes from Arabidopsis and rice genomic sequences as well as from Mesembryanthemum illustrates another level of complexity, the regulation of isogene expression and function of subunit isoforms. To this end, the review attempts to define directions of future research on plant V-ATPase. [References: 75]
机译:植物细胞的特征在于高度活跃的分泌系统,该系统包括在大多数分化组织中发现的大型中央液泡。植物液泡中的H + -ATPase在维持跨膜的离子和代谢梯度,激活运输过程和囊泡动力学方面起着至关重要的作用,因此对于植物的生长,发育以及对不断变化的环境条件的适应是必不可少的。该综述总结了阐明植物V-ATPase的结构,亚基组成,定位和调控的最新进展。来自拟南芥和水稻基因组序列以及来自菊花的亚基同工异物的新兴知识说明了另一层次的复杂性,同基因表达的调节和亚基同工型的功能。为此,本综述试图确定植物V-ATPase未来研究的方向。 [参考:75]

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