PLANT PLASMA MEMBRANE H+-ATPases: Powerhouses for Nutrient Uptake.

M. Palmgren
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引用次数: 776

Abstract

Most transport proteins in plant cells are energized by electrochemical gradients of protons across the plasma membrane. The formation of these gradients is due to the action of plasma membrane H+ pumps fuelled by ATP. The plasma membrane H+-ATPases share a membrane topography and general mechanism of action with other P-type ATPases, but differ in regulatory properties. Recent advances in the field include the identification of the complete H+-ATPase gene family in Arabidopsis, analysis of H+-ATPase function by the methods of reverse genetics, an improved understanding of the posttranslational regulation of pump activity by 14-3-3 proteins, novel insights into the H+ transport mechanism, and progress in structural biology. Furthermore, the elucidation of the three-dimensional structure of a related Ca2+ pump has implications for understanding of structure-function relationships for the plant plasma membrane H+-ATPase.
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植物质膜H+- atp酶:营养吸收的动力。
植物细胞中的大多数转运蛋白都是通过质子穿过质膜的电化学梯度来获得能量的。这些梯度的形成是由于由ATP驱动的质膜H+泵的作用。质膜H+- atp酶与其他p型atp酶具有相同的膜结构和一般的作用机制,但在调节特性上有所不同。该领域的最新进展包括拟南芥中完整的H+- atp酶基因家族的鉴定,通过反向遗传学方法分析H+- atp酶的功能,对14-3-3蛋白翻译后对泵活性的调控的进一步了解,对H+转运机制的新见解以及结构生物学的进展。此外,阐明相关Ca2+泵的三维结构对理解植物质膜H+- atp酶的结构-功能关系具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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