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MgATP 浓度依赖性保护酵母液泡 V-ATP 酶免于 7-氯-4-硝基苯并-2-氧代-1,3-二唑失活支持 ATP 水解的双位点催化机制。

MgATP-concentration dependence of protection of yeast vacuolar V-ATPase from inactivation by 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole supports a bi-site catalytic mechanism of ATP hydrolysis.

机构信息

Department of Biochemistry and Molecular Biology, State University of New York, Upstate Medical University, 750 East Adams Street, Syracuse, NY 13210, USA.

出版信息

Biochem Biophys Res Commun. 2012 Jun 29;423(2):355-9. doi: 10.1016/j.bbrc.2012.05.129. Epub 2012 May 31.

Abstract

Catalytic site occupancy of the yeast vacuolar V-ATPase during ATP hydrolysis in the presence of an ATP-regenerating system was probed using sensitivity of the enzyme to inhibition by 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole (NBD-Cl). The results show that, regardless of the presence or absence of the proton-motive force across the vacuolar membrane, saturation of V-ATPase activity at increasing MgATP concentrations is accompanied by only partial protection of the enzyme from inhibition by NBD-Cl. Both in the presence and absence of an uncoupler, complete protection of V-ATPase from inhibition by NBD-Cl requires MgATP concentrations that are significantly higher than those expected from the K(m) values for MgATP. The results are inconsistent with a tri-site model and support a bi-site model for a mechanism of ATP hydrolysis by V-ATPase.

摘要

在存在 ATP 再生系统的情况下,使用酶对 7-氯-4-硝基苯并-2-氧代-1,3-二唑 (NBD-Cl) 抑制的敏感性来探测酵母液泡 V-ATPase 在 ATP 水解过程中的催化部位占据情况。结果表明,无论液泡膜内外是否存在质子动力,增加 MgATP 浓度时 V-ATPase 活性的饱和仅伴有酶对 NBD-Cl 抑制的部分保护。在存在和不存在解偶联剂的情况下,NBD-Cl 对 V-ATPase 的完全抑制保护需要 MgATP 浓度明显高于 MgATP 的 K(m) 值。结果与三结合位点模型不一致,支持 V-ATPase ATP 水解机制的双结合位点模型。

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