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Molecular Characterization of Mutant Arabidopsis Plants with Reduced Plasma Membrane Proton Pump Activity*

机译:质子泵活性降低的突变拟南芥植物的分子特征*

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摘要

Arabidopsis mutants containing gene disruptions in AHA1 and AHA2, the two most highly expressed isoforms of the Arabidopsis plasma membrane H+-ATPase family, have been isolated and characterized. Plants containing homozygous loss-of-function mutations in either gene grew normally under laboratory conditions. Transcriptome and mass spectrometric measurements demonstrate that lack of lethality in the single gene mutations is not associated with compensation by increases in RNA or protein levels. Selected reaction monitoring using synthetic heavy isotope-labeled C-terminal tryptic peptides as spiked standards with a triple quadrupole mass spectrometer revealed increased levels of phosphorylation of a regulatory threonine residue in both isoforms in the mutants. Using an extracellular pH assay as a measure of in vivo ATPase activity in roots, less proton secreting activity was found in the aha2 mutant. Among 100 different growth conditions, those that decrease the membrane potential (high external potassium) or pH gradient (high external pH) caused a reduction in growth of the aha2 mutant compared with wild type. Despite the normal appearance of single mutants under ideal laboratory growth conditions, embryos containing homozygous double mutations are lethal, demonstrating that, as expected, this protein is absolutely essential for plant cell function. In conclusion, our results demonstrate that the two genes together perform an essential function and that the effects of their single mutations are mostly masked by overlapping patterns of expression and redundant function as well as by compensation at the post-translational level.
机译:已经分离并鉴定了在AHA1和AHA2(两个最高表达的拟南芥质膜H + -ATPase家族同工型)中含有基因破坏的拟南芥突变体。两种基因中均含有纯合功能丧失突变的植物在实验室条件下正常生长。转录组和质谱测量结果表明,单基因突变中缺乏致死性与RNA或蛋白质水平增加所造成的补偿无关。使用合成重同位素标记的C末端胰蛋白酶肽作为加标标准品并使用三重四极杆质谱仪进行的选择性反应监测显示,突变体的两种同工型中,苏氨酸残基的磷酸化水平提高。使用细胞外pH测定法来衡量根中体内ATPase的活性,在aha2突变体中发现的质子分泌活性较低。在100种不同的生长条件中,与野生型相比,降低膜电位(高外部钾)或pH梯度(高外部pH)的条件导致aha2突变体的生长减少。尽管在理想的实验室生长条件下单突变体正常出现,但含有纯合双突变的胚胎却具有致命性,这表明,正如所预期的,该蛋白对于植物细胞功能绝对必不可少。总之,我们的结果表明,这两个基因共同发挥了必不可少的功能,并且其单个突变的影响大部分被重叠的表达模式和冗余功能以及翻译后水平的补偿所掩盖。

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