Zhu Jin, Gong Jun Y, Goodman Oscar B, Cartegni Luca, Nanus David M, Shen Ruoqian
Department of Urology, Weill Medical College of Cornell University and New York Presbyterian Hospital, Rm E-300, Box 23, 1300 York Ave, New York, NY 10021, USA.
Biochim Biophys Acta. 2007 Jul;1773(7):1087-94. doi: 10.1016/j.bbamcr.2007.04.016. Epub 2007 May 3.
Although glucocorticoids are frequently administered to patients with hormone refractory prostate cancer, their therapeutic effectiveness is limited by the development of glucocorticoid resistance. The molecular mechanisms of glucocorticoid resistance are unknown but are believed to involve neuropeptide growth factors and cytokines. We examined the functional interaction between bombesin and dexamethasone in PC-3 cells and found that bombesin could act as a survival factor by interfering with dexamethasone-mediated growth inhibition. Because glucocorticoids exert their effects through glucocorticoid receptors (GRs), we measured the expression of GR alpha and GR beta isoforms in the presence of bombesin. Western blotting and real time PCR revealed bombesin induced expression of GR beta, but not GR alpha. Because GR isoforms are generated by alternative splicing of a common GR gene, we examined the expression of serine-arginine (SR) proteins involved in alternative splicing, and found that the expression of SRp30 was induced by bombesin in PC-3 cells. To characterize the role of SRp30 in splicing of GR isoforms, siRNAs specific to various SRp30 isoforms were transfected into PC-3 cells. We found that suppression of SRp30c expression by siRNA specifically antagonized bombesin's effect on glucocorticoid-mediated inhibition of PC cells, suggesting that bombesin-induced expression of SRp30c affects GR pre-mRNA splicing, leading to increased GR beta expression and contributing to glucocorticoid resistance in PC cells.
尽管糖皮质激素经常被用于治疗激素难治性前列腺癌患者,但其治疗效果受到糖皮质激素耐药性发展的限制。糖皮质激素耐药的分子机制尚不清楚,但据信涉及神经肽生长因子和细胞因子。我们研究了蛙皮素与地塞米松在PC-3细胞中的功能相互作用,发现蛙皮素可通过干扰地塞米松介导的生长抑制作用而作为一种存活因子。由于糖皮质激素通过糖皮质激素受体(GRs)发挥作用,我们在有蛙皮素存在时测量了GRα和GRβ亚型的表达。蛋白质免疫印迹法和实时PCR显示蛙皮素诱导了GRβ的表达,但未诱导GRα的表达。由于GR亚型是由一个共同的GR基因通过可变剪接产生的,我们研究了参与可变剪接的丝氨酸-精氨酸(SR)蛋白的表达,发现蛙皮素在PC-3细胞中诱导了SRp30的表达。为了表征SRp30在GR亚型剪接中的作用,将针对各种SRp30亚型的小干扰RNA(siRNAs)转染到PC-3细胞中。我们发现,通过siRNA抑制SRp30c的表达可特异性拮抗蛙皮素对糖皮质激素介导的PC细胞抑制作用的影响,这表明蛙皮素诱导的SRp30c表达影响GR前体mRNA的剪接,导致GRβ表达增加,并促成PC细胞中的糖皮质激素耐药性。