首页> 美国卫生研究院文献>Plant Physiology >The Laforin-Like Dual-Specificity Phosphatase SEX4 from Arabidopsis Hydrolyzes Both C6- and C3-Phosphate Esters Introduced by Starch-Related Dikinases and Thereby Affects Phase Transition of α-Glucans
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The Laforin-Like Dual-Specificity Phosphatase SEX4 from Arabidopsis Hydrolyzes Both C6- and C3-Phosphate Esters Introduced by Starch-Related Dikinases and Thereby Affects Phase Transition of α-Glucans

机译:拟南芥的类似Laforin的双特异性磷酸酶SEX4水解淀粉相关双激酶引入的C6-和C3-磷酸酯从而影响α-葡聚糖的相变。

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摘要

The biochemical function of the Laforin-like dual-specific phosphatase AtSEX4 (EC 3.1.3.48) has been studied. Crystalline maltodextrins representing the A- or the B-type allomorph were prephosphorylated using recombinant glucan, water dikinase (StGWD) or the successive action of both plastidial dikinases (StGWD and AtPWD). AtSEX4 hydrolyzed carbon 6-phosphate esters from both the prephosphorylated A- and B-type allomorphs and the kinetic constants are similar. The phosphatase also acted on prelabeled carbon-3 esters from both crystalline maltodextrins. Similarly, native starch granules prelabeled in either the carbon-6 or carbon-3 position were also dephosphorylated by AtSEX4. The phosphatase did also hydrolyze phosphate esters of both prephosphorylated maltodextrins when the (phospho)glucans had been solubilized by heat treatment. Submillimolar concentrations of nonphosphorylated maltodextrins inhibited AtSEX4 provided they possessed a minimum of length and had been solubilized. As opposed to the soluble phosphomaltodextrins, the AtSEX4-mediated dephosphorylation of the insoluble substrates was incomplete and at least 50% of the phosphate esters were retained in the pelletable (phospho)glucans. The partial dephosphorylation of the insoluble glucans also strongly reduced the release of nonphosphorylated chains into solution. Presumably, this effect reflects fast structural changes that following dephosphorylation occur near the surface of the maltodextrin particles. A model is proposed defining distinct stages within the phosphorylation/dephosphorylation-dependent transition of α-glucans from the insoluble to the soluble state.
机译:已经研究了类似Laforin的双特异性磷酸酶AtSEX4(EC 3.1.3.48)的生化功能。使用重组葡聚糖,水二激酶(StGWD)或两种质体二激酶(StGWD和AtPWD)的连续作用,将代表A型或B型同质异型物的结晶麦芽糊精进行预磷酸化。来自预磷酸化的A型和B型同素异形体的AtSEX4水解碳6磷酸酯,动力学常数相似。磷酸酶还作用于来自两种麦芽糊精的预先标记的碳3酯。同样,预先标记在碳6或碳3位置的天然淀粉颗粒也被AtSEX4磷酸化。当(磷酸)葡聚糖已经通过热处理溶解时,磷酸酶也确实水解了两种预磷酸化的麦芽糊精的磷酸酯。亚毫摩尔浓度的非磷酸化麦芽糖糊精可抑制AtSEX4,前提是它们具有最小长度且已被溶解。与可溶性磷酸麦芽糊精相反,不溶性底物的AtSEX4介导的去磷酸化作用不完全,可沉淀的(磷酸)葡聚糖中至少保留了50%的磷酸酯。不溶性葡聚糖的部分去磷酸化也大大减少了非磷酸化链向溶液中的释放。据推测,这种作用反映了快速的结构变化,该结构变化是在麦芽糊精颗粒表面附近发生脱磷酸作用之后发生的。提出了定义在α-葡聚糖从不溶状态到可溶状态的依赖于磷酸化/去磷酸化的转变内的不同阶段的模型。

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