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单一氨基酸(精氨酸)限制:培养的HeLa细胞和人二倍体成纤维细胞的生长与死亡

Single amino acid (arginine) restriction: growth and death of cultured HeLa and human diploid fibroblasts.

作者信息

Wheatley D N, Scott L, Lamb J, Smith S

机构信息

Department of Cell Pathology, MacRobert Building, University of Aberdeen, 581 King Street, Aberdeen AB24 5UA, UK.

出版信息

Cell Physiol Biochem. 2000;10(1-2):37-55. doi: 10.1159/000016333.

DOI:10.1159/000016333
PMID:10846151
Abstract

Requirements for arginine are different from leucine for the growth of HeLa cells in monolayer and suspension culture. Cells grow increasingly more slowly as arginine levels fall below millimolar. Most cells died at 10(-5) M in static cultures, but could be sustained in perfused cultures, but at 10(-6) M neither perfusion nor increased volume in static cultures compensated. Cell died within 3-4 days in 10(-6) M in the same manner as those in complete arginine deprivation, i.e. considerably faster than with leucine deprivation. Arginine restriction produced by arginase or arginine decarboxylase addition to culture medium gave similar results. Citrulline substituted for arginine, but ornithine and polyamines did not. Arginine was depleted 3-4 times faster from the medium than other amino acids, <5% being consumed in protein synthesis, and arginine released by protein turnover was less efficiently reutilised than leucine. Deprivation reduced protein and DNA syntheses, greatly extended S-phase and protracted the cell cycle in HeLa cells for more than leucine deprivation. The inability of the cells avoid reinitiation of S-phase resulted in their proliferative impetus driving them into an late cycle (premitotic) death. In contrast, normal human diploid fibroblasts reached quiescence with little delay and survived for >11 days. Arginine deprivation is discussed as a selectively means of tumour cell destruction.

摘要

在单层培养和悬浮培养中,HeLa细胞生长时对精氨酸的需求与对亮氨酸的需求不同。当精氨酸水平降至毫摩尔以下时,细胞生长越来越缓慢。在静态培养中,大多数细胞在10⁻⁵M时死亡,但在灌注培养中可以维持,但在10⁻⁶M时,无论是灌注培养还是静态培养中增加培养液体积都无法补偿。细胞在10⁻⁶M中3 - 4天内死亡,与完全缺乏精氨酸时的情况相同,即比缺乏亮氨酸时死亡速度快得多。向培养基中添加精氨酸酶或精氨酸脱羧酶产生的精氨酸限制产生了类似的结果。瓜氨酸可替代精氨酸,但鸟氨酸和多胺则不能。精氨酸从培养基中的消耗速度比其他氨基酸快3 - 4倍,蛋白质合成中消耗的精氨酸不到5%,并且蛋白质周转释放的精氨酸再利用效率低于亮氨酸。缺乏精氨酸会降低蛋白质和DNA合成,极大地延长HeLa细胞的S期并延长细胞周期,比缺乏亮氨酸时更甚。细胞无法避免S期重新启动,导致其增殖动力驱使它们进入晚期周期(有丝分裂前期)死亡。相比之下,正常人二倍体成纤维细胞几乎没有延迟地进入静止期,并存活超过11天。精氨酸剥夺被认为是一种选择性破坏肿瘤细胞的手段。

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