On the mechanism of lactate dehydrogenase leakage from normal and D-galactosamine-treated hepatocytes in monolayer culture.

A Eisenmann, J E Phillips, A Schulze-Specking, K Decker
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引用次数: 6

Abstract

Synthesis, degradation and leakage of lactate dehydrogenase and of total protein was measured using D-galactosamine-treated rat hepatocytes in monolayer culture. The kinetics of [3H]leucine incorporation into trichloroacetic acid-precipitable material and into isolated lactate dehydrogenase of cells and of the extra-cellular space revealed a similar extent of inhibition of both synthesis and leakage following exposure to D-galactosamine. Hepatocyte cultures that had been labeled before D-galactosamine treatment lost intracellular protein-associated radioactivity almost as rapidly as control cells up to the time of measurable enzyme leakage; thereafter, the rate of 3H-loss increased in the treated cells. Lactate dehydrogenase present in the medium is degraded less rapidly than the enzyme in the intracellular space. This explains the apparent increase of total lactate dehydrogenase activity in D-galactosamine-treated as compared to control cultures. Following [3H]leucine addition to D-galactosamine-treated cultures, the specific radioactivity of the leaked lactate dehydrogenase in the medium was never greater than that of the enzyme in the cytosolic compartment. The data rule out a direct excretion of newly synthesized enzyme as a result of D-galactosamine action.

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单层培养正常和d -半乳糖胺处理的肝细胞乳酸脱氢酶渗漏的机制。
用d -半乳糖胺处理的大鼠肝细胞进行单层培养,测定乳酸脱氢酶和总蛋白的合成、降解和泄漏。[3H]亮氨酸掺入三氯乙酸可沉淀物质和分离的细胞乳酸脱氢酶以及细胞外空间的动力学表明,暴露于d-半乳糖胺后,对合成和泄漏的抑制程度相似。在d -半乳糖胺处理前标记的肝细胞培养物在可测量的酶泄漏时间内几乎与对照细胞一样迅速地失去细胞内蛋白质相关的放射性;此后,处理细胞中3h -丢失率增加。培养基中乳酸脱氢酶的降解速度比细胞内的酶慢。这解释了d -半乳糖胺处理的总乳酸脱氢酶活性明显高于对照培养的原因。在d -半乳糖胺处理的培养物中加入[3H]亮氨酸后,培养基中泄漏的乳酸脱氢酶的特定放射性从未大于细胞质室中的酶。这些数据排除了由于d -半乳糖胺作用而直接排泄新合成酶的可能性。
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Interactions of the complex between human urinary trypsin inhibitor and human leukocyte elastase with alpha 1-proteinase inhibitor and alpha 2-macroglobulin. Gabexate mesilate (FOY) and aprotinin. A comparative study of the effects on trypsin-induced activation of the kinin and complement systems in vivo and in vitro. Aprotinin turn-over studies in dog and in man with severe acute pancreatitis. Kinetic studies on the mechanism of the penicillin amidase-catalysed synthesis of ampicillin and benzylpenicillin. [How do antibodies form? (9th Fritz Lipmann Lecture)].
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