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离体大鼠肝细胞中去唾液酸糖蛋白受体介导的内吞作用的温度依赖性。存在两个潜在限速步骤的证据。

Temperature dependence of endocytosis mediated by the asialoglycoprotein receptor in isolated rat hepatocytes. Evidence for two potentially rate-limiting steps.

作者信息

Weigel P H, Oka J A

出版信息

J Biol Chem. 1981 Mar 25;256(6):2615-7.

PMID:6259136
Abstract

The rate of endocytosis of cell surface-bound [3H]-asialo-orosomucoid was determined as a function of temperature. Freshly isolated rat hepatocytes were allowed to bind [3H]asialo-orosomucoid at 4 degrees C, washed to remove nonbound ligand, and internalization was then assessed by the resistance of cell-associated radioactivity to release by the Ca2+ chelator EDTA. At 10 degrees C or below, endocytosis is negligible. Above 10 degrees C, the rate of endocytosis is proportional to temperature but the increase of the rate of endocytosis with increasing temperature changes sharply at about 20 degrees C. From 10-20 degrees C, the apparent activation energy for endocytosis, calculated from an Arrhenius plot, is 45.9 kcal/mol and the temperature coefficient, Q10, is 15.6. However, between 20 and 41 degrees C, the calculated activation energy is 17.0 kcal/mol and the Q10 is 2.6. Although the rate of endocytosis of previously bound [3H]asialo-orosomucoid is very dependent on the temperature, the final extent of endocytosis is essentially temperature-independent between 14 and 37 degrees C. The results suggest that there are at least two steps in the overall process of endocytosis mediated by the asialoglycoprotein receptor on isolated hepatocytes which can be potentially rate-limiting, one at 10 degrees C and another at approximately 20 degrees C.

摘要

测定了细胞表面结合的[3H] - 去唾液酸血清类黏蛋白的内吞速率与温度的函数关系。将新鲜分离的大鼠肝细胞在4℃下与[3H] - 去唾液酸血清类黏蛋白结合,洗涤以去除未结合的配体,然后通过细胞相关放射性对Ca2 +螯合剂EDTA释放的抗性来评估内化情况。在10℃或更低温度下,内吞作用可忽略不计。在10℃以上,内吞速率与温度成正比,但内吞速率随温度升高的增加在约20℃时急剧变化。在10 - 20℃范围内,根据阿仑尼乌斯曲线计算的内吞作用表观活化能为45.9千卡/摩尔,温度系数Q10为15.6。然而,在20至41℃之间,计算出的活化能为17.0千卡/摩尔,Q10为2.6。尽管先前结合的[3H] - 去唾液酸血清类黏蛋白的内吞速率非常依赖于温度,但在14至37℃之间,内吞的最终程度基本与温度无关。结果表明,在分离的肝细胞上由去唾液酸糖蛋白受体介导的内吞作用的整个过程中至少有两个步骤可能是限速步骤,一个在10℃,另一个在约20℃。

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