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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >In situ monitoring of kinetics of metabolic conversion of ATP to ADP catalyzed by MgATPases of muscle Gastrocnemius skinned fibers using micellar electrokinetic chromatography
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In situ monitoring of kinetics of metabolic conversion of ATP to ADP catalyzed by MgATPases of muscle Gastrocnemius skinned fibers using micellar electrokinetic chromatography

机译:用胶束电动色谱原位监测肌肉腓肠肌皮纤维MgATPase催化ATP转化为ADP的代谢动力学

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摘要

A method for the in situ measurement of the kinetics of ATP metabolic transformation using capillary electrophoresis (CE) has been developed. The depletion of ATP and formation of AIDP were monitored in situ by using saponin-permeabilized muscle fibers. The method of micellar electrokinetic chromatography, employing reversed electroosmotic flow by cationic surfactant and reversed-polarity mode, provided an efficient and reproducible separation of nucleotides and enabled kinetic analysis of the reaction to be performed in a large range of nucleotide concentrations that approaches physiological concentrations of ATP in the muscle cells, without the need for precipitation of proteins prior to sample application. The analytes were detected at a nm level with a reproducibility of about 7%. This reproducibility enabled the comparison of different competing kinetic models of ATP conversion to ADP and the results show that the MgATPase activity in the fast-twitch gastrocnemius muscle followed biphasic kinetics that corresponds to the allosteric character of regulation of the enzyme(s) activity at physiological ATP concentrations. The results also confirmed that the combination of minimal sample volume requirements, rapid measurement and reproducibility makes the micellar CE a valuable tool for the analysis of biological fluids and understanding the processes of biological interest.
机译:已经开发了一种使用毛细管电泳(CE)原位测量ATP代谢转化动力学的方法。通过使用皂素透化的肌纤维原位监测ATP的消耗和AIDP的形成。胶束电动色谱法采用阳离子表面活性剂的反向电渗流和反向极性模式,提供了一种有效且可重现的核苷酸分离方法,并使反应的动力学分析能够在接近生理学浓度的大范围核苷酸浓度下进行。肌肉细胞中的ATP,无需在上样之前沉淀蛋白质。在纳米级检测到的分析物的重现性约为7%。这种可重复性使得能够比较不同的竞争性ATP转化为ADP的动力学模型,结果表明快跳腓肠肌中MgATPase活性遵循双相动力学,这与生理上调节酶活性的变构特征相对应。 ATP浓度。结果还证实,最小的样品量要求,快速的测量和可重复性的结合使胶束CE成为分析生物流体和了解生物学过程的有价值的工具。

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