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糖皮质激素和钙在S49细胞凋亡调节中的相似作用。

Similar actions of glucocorticoids and calcium on the regulation of apoptosis in S49 cells.

作者信息

Caron-Leslie L A, Cidlowski J A

机构信息

Department of Pharmacology, University of North Carolina, Chapel Hill 27599.

出版信息

Mol Endocrinol. 1991 Aug;5(8):1169-79. doi: 10.1210/mend-5-8-1169.

Abstract

Glucocorticoid-induced lymphocyte cell death is a programmed process which is thought to involve the calcium-dependent degradation of DNA into multiples of 180 basepairs, characteristic of internucleosomal degradation. We have used the glucocorticoid-sensitive mouse lymphoma cell line S49.1 [wild-type (wt)] and the glucocorticoid-resistant cell line S49.22r (nt-) to evaluate the role of both glucocorticoid receptors and calcium in the regulation of internucleosomal DNA degradation and expression of calcium-dependent deoxyribonuclease activity. DNA was isolated from untreated (control) and dexamethasone (dex)-treated viable cells and analyzed for internucleosomal DNA degradation by agarose gel electrophoresis, followed by ethidium bromide staining. Glucocorticoid treatment resulted in substantial internucleosomal DNA degradation in wt cells, but not in nt- cells. This effect was inhibited by coincubation of cells with dex and the glucocorticoid receptor antagonist RU486. In contrast to the glucocorticoid response, administration of either of two calcium ionophores, ionomycin or A23187, produced internucleosomal degradation of DNA in both wt and nt- cells, although the latter were less sensitive to ionophore treatment. Interestingly, A23187 treatment also resulted in a loss of cell viability in HeLa S3 cells, a cell line that does not exhibit glucocorticoid-induced apoptosis. No internucleosomal DNA degradation was detected in HeLa S3 cells killed by A23187. To determine whether similar nucleases are associated with this internucleosomal DNA degradation resulting from both glucocorticoid and calcium ionophore treatment, 0.3 M NaCl nuclear protein extracts were prepared from control and treated cells and analyzed for protein composition or nuclease activity. To assay for nuclease activity, nuclear extracts were electrophoresed in sodium dodecyl sulfate-polyacrylamide gels impregnated with [32P]DNA. Nuclease activity was detected by removal of sodium dodecyl sulfate from the gel, activation with calcium, and subsequent visualization of the loss of [32P]DNA by autoradiography. Dex treatment of wt cells resulted in the appearance of several proteins within the mol wt range of 12-18 kDa, only one of which (16-18 kDa) exhibited calcium-dependent nuclease activity. The appearance of these proteins in nuclear extracts was inhibited by coincubation of glucocorticoid-treated cells with RU 486. Glucocorticoid treatment did not result in the appearance of nuclease activity in nuclear extracts from nt- cells. Interestingly, A23187 or ionomycin treatment resulted in an increase in activity of the 16- to 18-kDa nuclease in both wt and nt- cells. These findings indicate that both glucocorticoid receptors and calcium may share common features in the regulation of apoptosis in lymphoid cells.

摘要

糖皮质激素诱导的淋巴细胞死亡是一个程序性过程,该过程被认为涉及DNA的钙依赖性降解,形成180碱基对倍数的片段,这是核小体间降解的特征。我们使用糖皮质激素敏感的小鼠淋巴瘤细胞系S49.1 [野生型(wt)]和糖皮质激素抗性细胞系S49.22r(nt-)来评估糖皮质激素受体和钙在调节核小体间DNA降解以及钙依赖性脱氧核糖核酸酶活性表达中的作用。从未经处理(对照)和地塞米松(dex)处理的活细胞中分离DNA,并通过琼脂糖凝胶电泳分析核小体间DNA降解情况,随后进行溴化乙锭染色。糖皮质激素处理导致wt细胞中大量核小体间DNA降解,但nt-细胞中未出现这种情况。细胞与dex和糖皮质激素受体拮抗剂RU486共同孵育可抑制这种效应。与糖皮质激素反应不同,两种钙离子载体(离子霉素或A23187)中的任何一种给药,均可在wt和nt-细胞中产生DNA的核小体间降解,尽管后者对离子载体处理的敏感性较低。有趣的是,A23187处理还导致HeLa S3细胞(一种不表现出糖皮质激素诱导凋亡的细胞系)的细胞活力丧失。在被A23187杀死的HeLa S3细胞中未检测到核小体间DNA降解。为了确定是否有类似的核酸酶与糖皮质激素和钙离子载体处理导致的这种核小体间DNA降解相关,从对照和处理过的细胞中制备了0.3M NaCl核蛋白提取物,并分析其蛋白质组成或核酸酶活性。为了检测核酸酶活性,将核提取物在含有[32P]DNA的十二烷基硫酸钠 - 聚丙烯酰胺凝胶中进行电泳。通过从凝胶中去除十二烷基硫酸钠、用钙激活以及随后通过放射自显影观察[32P]DNA的损失来检测核酸酶活性。dex处理wt细胞导致在12 - 18kDa分子量范围内出现几种蛋白质,其中只有一种(16 - 18kDa)表现出钙依赖性核酸酶活性。糖皮质激素处理的细胞与RU 486共同孵育可抑制这些蛋白质在核提取物中的出现。糖皮质激素处理未导致nt-细胞核提取物中出现核酸酶活性。有趣的是,A23187或离子霉素处理导致wt和nt-细胞中16 - 18kDa核酸酶的活性增加。这些发现表明,糖皮质激素受体和钙在淋巴细胞凋亡调节中可能具有共同特征。

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