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膜完整性在微粒体葡萄糖-6-磷酸酶系统动力学特性研究中的重要性。

The importance of membrane integrity in kinetic characterizations of the microsomal glucose-6-phosphatase system.

作者信息

Arion W J, Walls H E

出版信息

J Biol Chem. 1982 Oct 10;257(19):11217-20.

PMID:6288674
Abstract

The transport model of glucose-6-phosphatase (EC 3.1.3.9) was recently challenged by a report that detergent treatment had no effect on the presteady state kinetics of glucose-6-P hydrolysis catalyzed at 0 degree C by the enzyme in liver microsomes previously frozen in 0.25 M mannitol (Zakim, D., and Edmondson, D. E. (1982) J. Biol. Chem. 257, 1145-1148). The lack of response to detergent is shown to be the expected consequence of the conditions used in the presteady state measurements. First, when the assay temperature was reduced from 30 to 0 degree C the depression in the glucose-6-P phosphohydrolase activity of intact microsomes (i.e. the system) was much greater than that of fully disrupted microsomes (i.e. enzyme). This indicates that temperature influences transport much more than hydrolysis of glucose-6-P. As a result, the contribution of a small fraction of enzyme associated with disrupted structures is markedly exaggerated, so it becomes the predominant hydrolytic activity before detergent treatment. Second, freezing microsomes in 0.25 M mannitol caused such extensive disruption that all of the activity manifest at 0 degree C could be attributed to enzyme in disrupted structures. The present findings underscore the importance of assessing the state of intactness of "untreated" microsomes and quantifying the contribution of the disrupted component in kinetic analyses of the glucose-6-phosphatase system. The proposition that the detergent-induced changes in the kinetic properties of glucose 6-phosphatase represent removal of constraints imposed on the enzyme by the membrane environment rather than increased access of enzyme to substrate is critically analyzed.

摘要

葡萄糖-6-磷酸酶(EC 3.1.3.9)的转运模型最近受到了一项报告的挑战,该报告称,去污剂处理对先前在0.25 M甘露醇中冷冻的肝微粒体中的该酶在0℃催化的葡萄糖-6-磷酸水解的预稳态动力学没有影响(扎基姆,D.,和埃德蒙森,D. E.(1982年)《生物化学杂志》257,1145 - 1148)。对去污剂缺乏反应被证明是预稳态测量中所用条件的预期结果。首先,当测定温度从30℃降至0℃时,完整微粒体(即系统)的葡萄糖-6-磷酸磷酸水解酶活性的降低远大于完全破碎的微粒体(即酶)。这表明温度对转运的影响远大于葡萄糖-6-磷酸的水解。结果,与破碎结构相关的一小部分酶的贡献被显著夸大,因此在去污剂处理之前它就成为主要的水解活性。其次,在0.25 M甘露醇中冷冻微粒体导致如此广泛的破坏,以至于在0℃表现出的所有活性都可归因于破碎结构中的酶。本研究结果强调了在葡萄糖-6-磷酸酶系统的动力学分析中评估“未处理”微粒体的完整状态以及量化破碎成分贡献的重要性。对去污剂诱导的葡萄糖6-磷酸酶动力学性质变化代表去除膜环境对酶施加的限制而非增加酶与底物接触的观点进行了批判性分析。

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