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分级细胞内酸中毒会使软体动物肌肉中ATP水解的有效自由能变化产生广泛且可逆的降低。

Graded intracellular acidosis produces extensive and reversible reductions in the effective free energy change of ATP hydrolysis in a molluscan muscle.

作者信息

Combs C A, Ellington W R

机构信息

Department of Biological Science, Florida State University, Tallahassee 32306-3050, USA.

出版信息

J Comp Physiol B. 1995;165(3):203-12. doi: 10.1007/BF00260811.

Abstract

Phosphorus nuclear magnetic resonance spectroscopy was used to evaluate the impact of experimental reductions of intracellular pH on in vitro preparations of the radula protractor muscle of the marine gastropod, Busycon canaliculatum. The intracellular pH of radula refractor muscle bundles superfused with buffered artificial sea water (pH = 7.8) was 7.29. It was possible to clamp muscle intracellular pH at various acidotic states by changing the superfusate to 5, 10, and 15 mmol.l-1 5,5-dimethyl-oxazolidine-2,4-dione in buffered artificial sea water (pH = 6.5). Consistent and temporally stable reductions of intracellular pH were achieved (intracellular pH = 6.98, 6.79, and 6.62, respectively). During the acidotic transitions, arginine phosphate concentrations decreased and inorganic phosphate concentrations increased in a reciprocal manner and remained essentially constant after the intracellular pH stabilized. The extent of changes in arginine phosphate and inorganic phosphate was directly proportional to the magnitude of the imposed acidosis. Total adenosine triphosphate concentrations remained unchanged in all treatments. However, the magnesium adenosine triphosphate to total adenosine triphosphate ratio declined in direct relation to the extent of the acidosis. Intracellular free Mg2+ fell incrementally with reduced intracellular pH. All of the above effects were rapidly reversed when the 5,5-dimethyl-oxazolidine-2,4-dione was washed out by changing the superfusate to buffered artificial sea water (pH = 7.8). Mg-adenosine diphosphate concentrations were calculated in all treatments using equilibrium constants for the arginine kinase reaction corrected for pH and intracellular free [Mg2+]. The metabolite, intracellular pH, and [Mg2+] data were used to estimate the effective free energy of hydrolysis of adenosine triphosphate (dG/d xi ATP) under most experimental conditions. Experimental acidosis resulted in dramatic reductions in dG/d xi ATP which were fully reversible upon wash-out of 5,5-dimethyl-dioxazolidine-2,4-dione and recovery to normal intracellular pH conditions. Acidosis resulted in net hydrolysis of arginine phosphate, likely via a complex mechanism involving enhancement of rate of adenosine triphosphate hydrolysis and/or inhibition of adenosine triphosphate synthesis.

摘要

采用磷核磁共振波谱法评估细胞内pH值实验性降低对海洋腹足动物Busycon canaliculatum齿舌牵引肌体外制备物的影响。用缓冲人工海水(pH = 7.8)灌注的齿舌牵引肌束的细胞内pH值为7.29。通过将灌注液换成含5、10和15 mmol·l-1 5,5-二甲基-恶唑烷-2,4-二酮的缓冲人工海水(pH = 6.5),可以将肌肉细胞内pH值钳制在各种酸中毒状态。实现了细胞内pH值持续且时间上稳定的降低(细胞内pH值分别为6.98、6.79和6.62)。在酸中毒转变过程中,磷酸精氨酸浓度降低,无机磷酸浓度以相反的方式增加,并且在细胞内pH值稳定后基本保持恒定。磷酸精氨酸和无机磷酸的变化程度与施加的酸中毒程度成正比。在所有处理中,总三磷酸腺苷浓度保持不变。然而,三磷酸腺苷镁与总三磷酸腺苷的比率与酸中毒程度直接相关而下降。细胞内游离Mg2+随着细胞内pH值降低而逐渐下降。当通过将灌注液换成缓冲人工海水(pH = 7.8)洗去5,5-二甲基-恶唑烷-2,4-二酮时,上述所有效应迅速逆转。在所有处理中,使用针对pH值和细胞内游离[Mg2+]校正的精氨酸激酶反应的平衡常数计算了Mg-二磷酸腺苷浓度。代谢物、细胞内pH值和[Mg2+]数据用于估计大多数实验条件下三磷酸腺苷水解的有效自由能(dG/d xi ATP)。实验性酸中毒导致dG/d xi ATP显著降低,在洗去5,5-二甲基-二恶唑烷-2,4-二酮并恢复到正常细胞内pH值条件后,这种降低是完全可逆的。酸中毒导致磷酸精氨酸净水解,可能是通过涉及增强三磷酸腺苷水解速率和/或抑制三磷酸腺苷合成的复杂机制。

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