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通过31P-NMR技术测定细胞内pH值。生物系统中磷酸的二级解离常数。

Intracellular pH determination by a 31P-NMR technique. The second dissociation constant of phosphoric acid in a biological system.

作者信息

Seo Y, Murakami M, Watari H, Imai Y, Yoshizaki K, Nishikawa H, Morimoto T

出版信息

J Biochem. 1983 Sep;94(3):729-34. doi: 10.1093/oxfordjournals.jbchem.a134413.

Abstract

To evaluate the accuracy of pH determination by 31P-NMR, factors which influence the pK value of phosphate were appraised on the basis of the titration of 1 mM phosphate buffer solution. When the method is used for the determination of cytoplasmic pH, ionic strength is the major factor causing shifts of apparent pK (pK') value, and the magnitude of the shift can be predicted from the ionic strength calculated by means of the Debye-Hückel equation. Ions (Na+, K+, Mg2+, and Ca2+) and salivary protein affected the pK' value by 0.1 to 0.3 units in solution with a given ionic strength depending on the species of ion. The form of the titration curve varied with temperature. Based on these results, the value of 6.75 was obtained with the uncertainty of 0.12 for the intracellular pK' of frog muscle at 24 degrees C.

摘要

为评估31P-NMR测定pH值的准确性,基于对1 mM磷酸盐缓冲溶液的滴定,对影响磷酸盐pK值的因素进行了评估。当该方法用于测定细胞质pH值时,离子强度是导致表观pK(pK')值发生变化的主要因素,并且可以根据通过德拜-休克尔方程计算出的离子强度来预测这种变化的幅度。在具有给定离子强度的溶液中,离子(Na+、K+、Mg2+和Ca2+)和唾液蛋白会使pK'值根据离子种类的不同而改变0.1至0.3个单位。滴定曲线的形式随温度而变化。基于这些结果,在24摄氏度时,青蛙肌肉细胞内pK'值为6.75,不确定度为0.12。

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