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Pectin methylesterase metal ions and plant cell-wall extension. The role of metal ions in plant cell-wall extension.

机译:果胶甲酯酶金属离子和植物细胞壁延伸。金属离子在植物细胞壁延伸中的作用。

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摘要

The study of pectin methylesterase and wall-loosening enzyme activities in situ, as well as the estimation of the electrostatic potential of the cell wall, suggest a coherent picture of the role played by metal ions and pH in cell-wall extension. Cell-wall growth brings about a decrease of local proton concentration because the electrostatic potential difference (delta psi) of the wall decreases. This in turn activates pectin methylesterase, which restores the initial delta psi value. This process is amplified by the attraction of metal ions in the polyanionic cell-wall matrix. The amplification process is basically due to the release of enzyme molecules that were initially bound to 'blocks' of carboxy groups. This increase of metal-ion concentration also results in the activation of wall-loosening enzymes. Moreover, the apparent 'inhibition' of pectin methylesterase by high salt concentrations may be considered as a device which prevents the electrostatic potential from becoming too high.
机译:对果胶甲基酯酶和壁松弛酶原位活性的研究以及对细胞壁静电势的估计,表明了金属离子和pH在细胞壁延伸中所起的作用的连贯图景。细胞壁的生长导致局部质子浓度的降低,因为壁的静电电势差(δpsi)减小。这又激活了果胶甲基酯酶,从而恢复了初始Δpsi值。金属离子在聚阴离子细胞壁基质中的吸引力进一步放大了这一过程。扩增过程基本上是由于释放了最初与羧基“嵌段”结合的酶分子。金属离子浓度的这种增加还导致壁松弛酶的活化。此外,高盐浓度对果胶甲基酯酶的明显“抑制”可被认为是防止静电势变高的装置。

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