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某些人类肿瘤细胞中的热疗、钠钾ATP酶与乳酸生成

Hyperthermia, Na+K+ATPase and lactic acid production in some human tumour cells.

作者信息

Burdon R H, Kerr S M, Cutmore C M, Munro J, Gill V

出版信息

Br J Cancer. 1984 Apr;49(4):437-45. doi: 10.1038/bjc.1984.70.

Abstract

When HeLa cells are exposed to brief heat shock at 45 degrees C there is a reduction in the cellular level of Na+K+ATPase. Return of the cells to the normal growth temperature of 37 degrees C leads to a partial restoration of enzyme activity. The pattern of this recovery of activity suggests that it may be associated with the induction of heat shock proteins. Indeed other means of heat shock protein induction such as continuous heat treatment at 42 degrees C, or treatment of cells at 37 degrees C with sodium arsenite, leads to elevated levels of Na+K+ATPase activity and alterations in the kinetic properties of the enzyme. Continuous hyperthermia at 42 degrees C led to increased lactate production which could be blocked with ouabain suggesting that effects on Na+K+ATPase activity could partly influence glycolysis. A number of other human and hamster cells also showed increased lactate production at 42 degrees C and also an inhibition of lactate production by ouabain. Whilst incubation of HeLa cells with cyanide had little effect on glycolysis at 37 degrees C elevation of the temperature to 42 degrees C (or 45 degrees C), in the presence of cyanide, impaired glycolysis. The possible role in this phenomenon, of an unusual oxygen-sensitive isoenzyme of lactate dehydrogenase, expressed in human cancers, is discussed.

摘要

当海拉细胞暴露于45摄氏度的短暂热休克时,细胞内Na⁺K⁺ATP酶水平会降低。将细胞恢复到37摄氏度的正常生长温度会导致酶活性部分恢复。这种活性恢复模式表明它可能与热休克蛋白的诱导有关。事实上,其他诱导热休克蛋白的方法,如在42摄氏度持续热处理,或在37摄氏度用亚砷酸钠处理细胞,会导致Na⁺K⁺ATP酶活性水平升高以及酶动力学特性改变。42摄氏度持续高温会导致乳酸生成增加,而哇巴因可阻断这种增加,这表明对Na⁺K⁺ATP酶活性的影响可能部分影响糖酵解。许多其他人类和仓鼠细胞在42摄氏度时也显示出乳酸生成增加,并且哇巴因也会抑制乳酸生成。虽然在37摄氏度时用氰化物孵育海拉细胞对糖酵解影响不大,但在氰化物存在的情况下,将温度升高到42摄氏度(或45摄氏度)会损害糖酵解。本文讨论了在人类癌症中表达的一种异常的对氧敏感的乳酸脱氢酶同工酶在这一现象中的可能作用。

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