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Glycogen Phosphorylase b and Phosphorylase Kinase Binding to Glycogen under Molecular Crowding Conditions.Inhibitory Effect of FAD

机译:分子拥挤条件下糖原磷酸化酶b和磷酸化酶激酶与糖原的结合.FAD的抑制作用

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摘要

Dynamic light scattering was used to study the interaction of phosphorylase kinase (PhK) and glycogen phosphorylase b (Phb) from rabbit skeletal muscle with glycogen under molecular crowding conditions arising from the presence of 1 M trimethylamine N-oxide and at physiological ionic strength. The mean value of hydrodynamic radius of the initial glycogen particles was 52 nm. Crowding stimulated Phb and PhK combined binding on glycogen particles. Two-stage character of PhK binding to glycogen particles containing adsorbed Phb was found in the presence of the crowding agent. At the initial stage,limited size particles with hydrodynamic radius of -220 nm are formed,whereas the second stage is accompanied by linear growth of hydrodynamic radius. Flavin adenine dinucleotide (FAD) selectively inhibited PhK binding at the second stage. The data indicate that in the first stage Phb is involved in PhK binding by glycogen particles containing adsorbed Phb,whereas PhK binding in the second stage does not involve Phb.
机译:动态光散射用于研究在1 M三甲胺N-氧化物的存在和生理离子强度引起的分子拥挤条件下,兔骨骼肌磷酸化酶激酶(PhK)和糖原磷酸化酶b(Phb)与糖原的相互作用。初始糖原颗粒的流体动力学半径的平均值为52nm。拥挤刺激的Phb和PhK结合在糖原颗粒上。在拥挤剂的存在下,PhK与含吸附的Phb的糖原颗粒结合的两阶段特征被发现。在初始阶段,形成了流体动力学半径为-220 nm的有限尺寸的颗粒,而第二阶段伴随着流体动力学半径的线性增长。黄素腺嘌呤二核苷酸(FAD)在第二阶段选择性抑制PhK结合。数据表明,在第一阶段,Phb通过含有吸附的Phb的糖原颗粒参与PhK的结合,而在第二阶段,PhK的结合不涉及Phb。

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