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光对菜豆叶片质膜H(+) -ATP酶的特性及影响

Characterization and effect of light on the plasma membrane H(+) -ATPase of bean leaves.

作者信息

Linnemeyer P A, Van Volkenburgh E, Cleland R E

机构信息

Department of Botany, University of Washington, Seattle 98195, USA.

出版信息

Plant Physiol. 1990;94(4):1671-6. doi: 10.1104/pp.94.4.1671.

Abstract

Proton excretion from bean (Phaseolus vulgaris L.) leaf cells is increased by bright white light. To test whether this could be due, at least in part, to an increase in plasma membrane (PM) ATPase activity, PM vesicles were isolated from primary leaves by phase partitioning and used to characterize PM ATPase activity and changes in response to light. ATPase activity was characterized as magnesium ion dependent, vanadate sensitive, and slightly stimulated by potassium chloride. The pH optimum was 6.5, the Km was approximately 0.30 millimolar ATP, and the activity was about 60% latent. PM vesicles were prepared from leaves of plants grown for 11 days in dim red light (growing slowly) or grown for 10 days in dim red light and then transferred to bright white-light for 1 day (growing rapidly). For both light treatments, ATPase specific activity was approximately 600 to 700 nanomoles per milligram protein per minute, and the latency, Km, and sensitivity to potassium chloride were also similar. PM vesicles from plants grown in complete darkness, however, exhibited a twofold greater specific activity. We conclude that the promotion of leaf growth and proton excretion by bright white light is not due to an increase in ATPase specific activity. Light does influence ATPase activity, however; both dim red light and bright white light decreased the ATPase specific activity by nearly 50% as compared with dark-grown leaves.

摘要

明亮的白光可增加菜豆(Phaseolus vulgaris L.)叶片细胞的质子排泄。为了测试这是否至少部分归因于质膜(PM)ATP酶活性的增加,通过相分配从初生叶中分离出PM囊泡,并用于表征PM ATP酶活性以及对光响应的变化。ATP酶活性的特征是依赖镁离子、对钒酸盐敏感,并受到氯化钾的轻微刺激。最适pH为6.5,Km约为0.30毫摩尔ATP,活性约60%为潜在活性。PM囊泡是从在暗红色光下生长11天(生长缓慢)或在暗红色光下生长10天然后转移到明亮白光下1天(生长迅速)的植物叶片中制备的。对于这两种光照处理,ATP酶比活性约为每分钟每毫克蛋白质600至700纳摩尔,潜在活性、Km以及对氯化钾的敏感性也相似。然而,在完全黑暗中生长的植物的PM囊泡表现出两倍高的比活性。我们得出结论,明亮的白光促进叶片生长和质子排泄并非由于ATP酶比活性增加。然而,光确实会影响ATP酶活性;与黑暗中生长的叶片相比,暗红色光和明亮白光均使ATP酶比活性降低近50%。

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