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Effect of membrane surface charge on nickel uptake by purified mung bean root protoplasts

机译:膜表面电荷对纯化绿豆根原生质体吸收镍的影响

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The influence of membrane surface charge on cation uptake was investigated in protoplasts prepared from roots of mung bean (Vigna radiata L.). Confocal laser scanning microscopy showed that a fluorescent trivalent cation accumulated to very high concentrations at the surface of the protoplasts when they were incubated in medium containing low concentrations of Ca or other cations, but that this accumulation could be completely reversed by suppression of membrane surface negativity by high cation concentrations. Influx of 63Ni was strongly reduced by a range of divalent cations. Increasing the Ca concentration in the medium from 25 µM to 10 mM inhibited 63Ni influx by more than 85%. 63Ni influx was also inhibited by 85% by reducing the pH from 7 to 4. Computation of the activity of Ni at the membrane surface under the various treatment conditions showed that Ni uptake was closely correlated with its activity at the membrane surface but not with its concentration in the bulk medium. It was concluded that the effects on Ni uptake of addition of monovalent, divalent and trivalent cations, and of variations in pH are all consistent with the proposition that the activity of Ni at the membrane surface is the major determinant of the rate of Ni influx into mung bean protoplasts. It is proposed that the surface charge on the plasma membrane will influence the membrane transport of most charged molecules into cells.
机译:在由绿豆(Vigna radiata L.)的根制成的原生质体中,研究了膜表面电荷对阳离子吸收的影响。共聚焦激光扫描显微镜显示,当荧光三价阳离子在含有低浓度Ca或其他阳离子的培养基中孵育时,它们会在原生质体表面积聚到非常高的浓度,但是这种积聚可以通过抑制膜表面负电荷而完全逆转。通过高阳离子浓度。一系列二价阳离子大大减少了63 Ni的流入。将培养基中的Ca浓度从25 µM增加到10 mM可以抑制63 Ni的流入超过85%。通过将pH值从7降低到4,也可以抑制635%的Ni流入。计算各种处理条件下膜表面Ni的活性表明,Ni的吸收与其在膜上的活性密切相关。表面,但不存在于散装介质中。结论是,添加一价,二价和三价阳离子以及pH值变化对Ni吸收的影响均与以下观点一致:在膜表面Ni的活性是Ni流入的速率的主要决定因素。绿豆原生质体。提出质膜上的表面电荷将影响大多数带电分子进入细胞的膜运输。

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