Sharma K, Srikant C B
Fraser Laboratories for Diabetes Research, Department of Medicine, McGill University, Montreal, Quebec, Canada.
Biochem Biophys Res Commun. 1998 Jan 6;242(1):134-40. doi: 10.1006/bbrc.1997.7933.
Apoptosis associated oligonucleosomal fragmentation of DNA can result from the activation of endonucleases that exhibit different pH optima and are either sensitive or insensitive to divalent cations. DNA fragmentation due to activation of cation sensitive endonucleases occurs in the absence of a change in intracellular pH whereas intracellular acidification is a feature of apoptosis characterized by activation of cation insensitive acidic endonuclease. We have reported earlier that somatostatin (SST) induced DNA fragmentation and apoptosis is signaled in a receptor subtype selective manner uniquely via human somatostatin receptor subtype 3 (hSSTR3). In the present study we investigated the pH dependence and cation sensitivity of endonuclease induced in hSSTR3 expressing CHO-K1 cells by the SST agonist octreotide (OCT) and its effect on intracellular pH. We show that OCT induced apoptosis is associated with selective stimulation of a divalent cation insensitive acidic endonuclease. The intracellular pH of of cells undergoing OCT induced apoptosis was 0.9 pH units lower than that of control cells. The effect of OCT on endonuclease and pH was inhibited by orthovanadate as well as by pretreatment with pertussis toxin, suggesting that hSSTR3 initiated cytotoxic signaling is protein tyrosine phosphatase mediated and is G protein dependent. These findings suggest that intracellular acidification and activation of acidic endonuclease mediate wild type p53 associated apoptosis signaled by hormones acting via G protein coupled receptors.
凋亡相关的DNA寡核小体片段化可由核酸内切酶的激活引起,这些核酸内切酶表现出不同的最适pH值,并且对二价阳离子敏感或不敏感。由阳离子敏感核酸内切酶激活引起的DNA片段化在细胞内pH值无变化的情况下发生,而细胞内酸化是凋亡的一个特征,其特点是阳离子不敏感的酸性核酸内切酶被激活。我们之前报道过,生长抑素(SST)诱导的DNA片段化和凋亡以受体亚型选择性方式独特地通过人类生长抑素受体亚型3(hSSTR3)发出信号。在本研究中,我们研究了生长抑素激动剂奥曲肽(OCT)在表达hSSTR3的CHO-K1细胞中诱导的核酸内切酶的pH依赖性和阳离子敏感性及其对细胞内pH的影响。我们表明,OCT诱导的凋亡与二价阳离子不敏感的酸性核酸内切酶的选择性刺激有关。经历OCT诱导凋亡的细胞的细胞内pH值比对照细胞低0.9个pH单位。奥曲肽对核酸内切酶和pH的作用被原钒酸盐以及百日咳毒素预处理所抑制,这表明hSSTR3启动的细胞毒性信号传导是由蛋白酪氨酸磷酸酶介导的,并且是G蛋白依赖性的。这些发现表明,细胞内酸化和酸性核酸内切酶的激活介导了由通过G蛋白偶联受体起作用的激素发出信号的野生型p53相关凋亡。