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磷脂、去污剂及蛋白质-蛋白质相互作用对可溶性肌浆网Ca-ATP酶稳定性和磷酸化酶异构化的影响

Effect of phospholipid, detergent and protein-protein interaction on stability and phosphoenzyme isomerization of soluble sarcoplasmic reticulum Ca-ATPase.

作者信息

Vilsen B, Andersen J P

机构信息

Institute of Physiology, University of Aarhus, Denmark.

出版信息

Eur J Biochem. 1987 Dec 30;170(1-2):421-9. doi: 10.1111/j.1432-1033.1987.tb13716.x.

Abstract

The purpose of the present study was to elucidate the separate roles of lipid, detergent and protein-protein interaction for stability and catalytic properties of sarcoplasmic reticulum Ca-ATPase solubilized in the non-ionic detergent octa(ethylene glycol) monododecyl ether (C12E8). The use of large-zone high-performance liquid chromatography permitted us to define the self-association state of Ca-ATPase peptide at various detergent, phospholipid and protein concentrations, and also during enzymatic turnover with ATP. Conditions were established for monomerization of Ca-ATPase in the presence of a high concentration of phospholipid relative to detergent. The lipid-saturated monomeric preparation was relatively resistant to inactivation in the absence of Ca2+, whereas delipidated enzyme in monomeric or in oligomeric form was prone to inactivation. Kinetics of phosphoenzyme turnover were examined in the presence and absence of Mg2+. Dephosphorylation rates were sensitive to Mg2+, irrespective of whether the peptide was present in soluble monomeric form or was membrane-bound. C12E8-solubilized monomer without added phospholipid was, however, characterized by a fast initial phase of dephosphorylation in the absence of Mg2+. This was not observed with monomer saturated with phospholipid or with monomer solubilized in myristoylglycerophosphocholine or deoxycholate. The mechanism underlying this difference was shown to be a C12E8-induced acceleration of conversion of ADP-sensitive phosphoenzyme (E1P) to ADP-insensitive phosphoenzyme (E2P). The phosphoenzyme isomerization rate was also found to be enhanced by low-affinity binding of ATP. This was demonstrated both in membrane-bound and in soluble monomeric Ca-ATPase. Our results indicate that a single peptide chain constitutes the target for modulation of phosphoenzyme turnover by Mg2+ and ATP, and that detergent effects, distinct from those arising from disruption of protein-protein contacts, are the major determinants of kinetic differences between C12E8-solubilized and membrane-bound enzyme preparations.

摘要

本研究的目的是阐明脂质、去污剂和蛋白质-蛋白质相互作用对溶解于非离子去污剂八(乙二醇)单十二烷基醚(C12E8)中的肌浆网Ca-ATP酶的稳定性和催化特性的各自作用。使用大区域高效液相色谱法使我们能够确定Ca-ATP酶肽在各种去污剂、磷脂和蛋白质浓度下,以及在ATP酶促周转过程中的自缔合状态。建立了在相对于去污剂高浓度磷脂存在下Ca-ATP酶单体化的条件。脂质饱和的单体制剂在无Ca2+时相对抗失活,而脱脂的单体或寡聚形式的酶则易于失活。在有和无Mg2+的情况下检查了磷酸酶周转的动力学。无论肽是以可溶性单体形式存在还是与膜结合,去磷酸化速率对Mg2+都敏感。然而,未添加磷脂的C12E8溶解的单体的特征是在无Mg2+时去磷酸化的快速初始阶段。在磷脂饱和的单体或溶解于肉豆蔻酰甘油磷酸胆碱或脱氧胆酸盐中的单体中未观察到这种情况。这种差异的潜在机制被证明是C12E8诱导的ADP敏感磷酸酶(E1P)向ADP不敏感磷酸酶(E2P)转化的加速。还发现ATP的低亲和力结合增强了磷酸酶异构化速率。这在膜结合的和可溶性单体Ca-ATP酶中均得到证实。我们的结果表明,单条肽链构成了Mg2+和ATP调节磷酸酶周转的靶点,并且与因蛋白质-蛋白质接触破坏而产生的影响不同,去污剂的影响是C12E8溶解的酶制剂和膜结合的酶制剂之间动力学差异的主要决定因素。

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