Division of Cancer Prevention, Department of Medicine, Stony Brook University, Stony Brook, New York, United States of America.
PLoS One. 2013 May 1;8(5):e61532. doi: 10.1371/journal.pone.0061532. Print 2013.
New agents are needed to treat pancreatic cancer, one of the most lethal human malignancies. We synthesized phospho-valproic acid, a novel valproic acid derivative, (P-V; MDC-1112) and evaluated its efficacy in the control of pancreatic cancer. P-V inhibited the growth of human pancreatic cancer xenografts in mice by 60%-97%, and 100% when combined with cimetidine. The dominant molecular target of P-V was STAT3. P-V inhibited the phosphorylation of JAK2 and Src, and the Hsp90-STAT3 association, suppressing the activating phosphorylation of STAT3, which in turn reduced the expression of STAT3-dependent proteins Bcl-xL, Mcl-1 and survivin. P-V also reduced STAT3 levels in the mitochondria by preventing its translocation from the cytosol, and enhanced the mitochondrial levels of reactive oxygen species, which triggered apoptosis. Inhibition of mitochondrial STAT3 by P-V was required for its anticancer effect; mitochondrial STAT3 overexpression rescued animals from the tumor growth inhibition by P-V. Our results indicate that P-V is a promising candidate drug against pancreatic cancer and establish mitochondrial STAT3 as its key molecular target.
需要新的药物来治疗胰腺癌,这是最致命的人类恶性肿瘤之一。我们合成了磷酸缬氨酸,一种新型的缬氨酸衍生物(P-V;MDC-1112),并评估了其在控制胰腺癌方面的疗效。P-V 抑制了小鼠中人类胰腺癌异种移植物的生长,抑制率为 60%-97%,与西咪替丁联合使用时抑制率为 100%。P-V 的主要分子靶标是 STAT3。P-V 抑制了 JAK2 和 Src 的磷酸化,以及 Hsp90-STAT3 结合,抑制了 STAT3 的激活磷酸化,进而降低了 STAT3 依赖性蛋白 Bcl-xL、Mcl-1 和 survivin 的表达。P-V 还通过阻止 STAT3 从细胞质易位到线粒体,降低了线粒体中的 STAT3 水平,并增加了线粒体中活性氧的水平,从而引发细胞凋亡。P-V 对线粒体 STAT3 的抑制作用是其抗癌作用所必需的;线粒体 STAT3 的过表达可使动物免受 P-V 抑制肿瘤生长的影响。我们的研究结果表明,P-V 是一种有前途的治疗胰腺癌的候选药物,并将线粒体 STAT3 确立为其关键的分子靶标。