首页> 美国卫生研究院文献>Plant Physiology >Modulation of H+-ATPase Activity by Fusicoccin in Plasma Membrane Vesicles from Oat (Avena sativa L.) Roots (A Comparison of Modulation by Fusicoccin Trypsin and Lysophosphatidylcholine).
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Modulation of H+-ATPase Activity by Fusicoccin in Plasma Membrane Vesicles from Oat (Avena sativa L.) Roots (A Comparison of Modulation by Fusicoccin Trypsin and Lysophosphatidylcholine).

机译:Fusicoccin对燕麦(Avena sativa L.)根质膜囊泡中H + -ATPase活性的调节(Fusicoccin胰蛋白酶和溶血磷脂酰胆碱的调节作用比较)。

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摘要

The fungal phytotoxin fusicoccin affects various transport processes in the plasma membrane of plant cells. The plasma membrane (PM) H+-ATPase (EC 3.6.1.35) seems to be the primary target of fusicoccin action. The kinetics of the stimulation of the PM H+-ATPase by fusicoccin was studied in PM vesicles isolated from oat (Avena sativa cv Adamo) roots by aqueous two-phase partitioning. Considerable stimulation of activity was observed only when roots were treated with fusicoccin prior to the PM isolation. Fusicoccin treatment shifted the pH optimum of the ATPase toward more alkaline values and increased Vmax. No effects on Km were observed. Treatment with trypsin resulted in stimulation of ATPase activity in control vesicles but not in the fusicoccin-treated vesicles. The characteristics of stimulation by trypsin in control vesicles were comparable with those of stimulation by fusicoccin. This result and the change of the polypeptide pattern on western blots suggest the involvement of the C-terminal inhibitory domain in the fusicoccin signal transduction chain. On the other hand, stimulation by lyso-PC demonstrated other characteristics than stimulation by fusicoccin. Lyso-PC was able to stimulate ATPase activity at both acidic and alkaline pH values. Kinetic analysis of the pH dependency curves revealed different mechanisms for activation by fusicoccin and by lyso-PC. Whereas fusicoccin shifted the pH dependency of formation of phosphorylated intermediate to more alkaline values, lyso-PC seemed to increase dephosphorylation independently of pH.
机译:真菌性植物毒素岩藻球菌素影响植物细胞质膜中的各种转运过程。质膜(PM)H + -ATPase(EC 3.6.1.35)似乎是fusicoccin作用的主要靶标。在通过水两相分配从燕麦(Avena sativa cv Adamo)根中分离出的PM囊泡中,研究了Fusicoccin刺激PM H + -ATPase的动力学。仅当在PM分离前用岩藻球菌素处理根部时,才观察到相当大的活​​性刺激。 Fusicoccin处理将ATPase的最适pH值移向更多的碱性值并增加了Vmax。没有观察到对Km的影响。用胰蛋白酶处理可刺激对照囊泡中的ATPase活性刺激,而经福柯霉素处理的囊泡中则无刺激作用。对照囊泡中胰蛋白酶刺激的特征与岩藻球菌素刺激的特征相当。该结果和Western印迹上多肽模式的变化表明,在Fusicoccin信号转导链中涉及C末端抑制域。另一方面,溶血素PC刺激显示出除岩藻球菌素刺激之外的其他特征。 Lyso-PC能够在酸性和碱性pH值下刺激ATPase活性。 pH依赖性曲线的动力学分析揭示了岩藻球菌素和溶血PC激活的不同机制。尽管fusicoccin将磷酸化中间体的形成对pH的依赖性移到了更大的碱性值,但溶血PC似乎增加了独立于pH的去磷酸化。

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