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尿素对肌浆网三磷酸腺苷酶部分反应及结晶模式的影响

Effect of urea on the partial reactions and crystallization pattern of sarcoplasmic reticulum adenosine triphosphatase.

作者信息

Jorge-Garcia I, Bigelow D J, Inesi G, Wade J B

机构信息

Department of Biological Chemistry, University of Maryland School of Medicine, Baltimore 21201.

出版信息

Arch Biochem Biophys. 1988 Aug 15;265(1):82-90. doi: 10.1016/0003-9861(88)90373-6.

Abstract

Steady-state ATPase activity, calcium binding, formation of phosphorylated enzyme intermediate with ATP in the presence of Ca2+, or with Pi in the absence of Ca2+, and association of ATPase molecules into bidimensional crystals, were studied using vesicular fragments of sarcoplasmic reticulum. The vesicles were exposed to increasing concentrations of urea in order to produce stepwise perturbations of protein structure and to test the effect of such perturbations on the partial reactions and crystallization pattern of sarcoplasmic reticulum ATPase. It was found that low concentrations of urea produce specific inhibition of Pi binding and enzyme phosphorylation with Pi (but not with ATP). Intermediate concentrations of urea reduce calcium binding affinity and cooperativity, while the ability of the enzyme to be phosphorylated with ATP and to form dimeric arrays is retained. These observations demonstrate that the sarcoplasmic reticulum ATPase is sensitive to physical perturbations producing specific and reversible changes in the Pi and calcium binding domains. These changes interfere with enzyme turnover, indicating that conformational effects related to binding and dissociation of Pi and calcium are tightly coupled to catalysis and energy transduction. Higher concentrations of urea produce irreversible denaturation, accompanied by total inhibition of calcium binding, enzyme phosphorylation with ATP, and association of ATPase chains in bidimensional crystals. Under these conditions, protein unfolding is manifested by a sharp reduction in the fluorescence of intrinsic tryptophan residues and of a covalently bound probe. These observations suggest that dimeric association and a tendency to form bidimensional crystals correspond to a basic property of the enzyme, which is linked to its native structure and whose character may change in the presence of ligands and/or during the catalytic cycle. On the other hand, the decavanadate-induced crystallization pattern cannot be interpreted in terms of a mechanistic relationship of ATPase dimerization with one of the intermediate states of the catalytic cycle.

摘要

利用肌质网的囊泡片段,研究了稳态ATP酶活性、钙结合、在Ca2+存在下与ATP形成磷酸化酶中间体或在无Ca2+时与Pi形成磷酸化酶中间体,以及ATP酶分子聚合成二维晶体的情况。将囊泡暴露于浓度不断增加的尿素中,以逐步扰动蛋白质结构,并测试这种扰动对肌质网ATP酶的部分反应和结晶模式的影响。结果发现,低浓度尿素会特异性抑制Pi结合以及酶与Pi的磷酸化作用(但不抑制与ATP的磷酸化作用)。中等浓度尿素会降低钙结合亲和力和协同性,同时保留酶与ATP磷酸化以及形成二聚体阵列的能力。这些观察结果表明,肌质网ATP酶对物理扰动敏感,这些扰动会在Pi和钙结合结构域产生特异性和可逆的变化。这些变化会干扰酶的周转,表明与Pi和钙的结合和解离相关的构象效应与催化和能量转导紧密耦合。高浓度尿素会导致不可逆变性,同时伴随着钙结合、酶与ATP磷酸化以及ATP酶链在二维晶体中缔合的完全抑制。在这些条件下,蛋白质解折叠表现为内在色氨酸残基和共价结合探针的荧光急剧降低。这些观察结果表明,二聚体缔合以及形成二维晶体的趋势对应于该酶的一种基本特性,这与它的天然结构相关,并且其特性可能在存在配体时和/或在催化循环过程中发生变化。另一方面,十钒酸盐诱导的结晶模式无法根据ATP酶二聚化与催化循环中间状态之一的机制关系来解释。

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