Zhao Lan, Zhao Qian, Lu Rong, Fu Zheng, Zhu Zhifeng, Jia Jing, Wang Song, Shi Linxi, Jian Xu, Yao Zhi
Department of Immunology, Tianjin Medical University, Tianjin 300070, China.
J Cell Biochem. 2008 Feb 1;103(2):471-8. doi: 10.1002/jcb.21409.
Tyroserleutide (YSL) is a tripeptide compound that has exhibited inhibitory effects on hepatocellular carcinoma in our previous research. The mechanism of this antitumor activity involves the second messenger, Ca(2+). Ca(2+) influences cell function through the Ca(2+)/calmodulin (CaM) pathway, and abnormality of the Ca(2+)/CaM system correlates closely with the occurrence of tumors. In addition, CaM associates with phosphatidylinositol 3 kinase (PI3K), thereby enhancing the activity of PI3K, which promotes cell proliferation. In order to investigate its anti-tumor mechanism, we studied the effects of YSL on CaM protein expression and mRNA level, PI3K activity, PI3K regulatory subunit p85 protein expression and mRNA level, and the mRNA level of PI3K catalytic subunits p110alpha and p110gamma in human hepatocellular carcinoma BEL-7402 xenograft tumors in nude mice. Our results showed that YSL decreased the mRNA level and protein expression of CaM, inhibited the activity of PI3K, and reduced the mRNA level and protein expression of the PI3K regulatory subunit p85 and mRNA level of PI3K catalytic subunits p110alpha and p110gamma. Accordingly, it is suggestive that the anti-tumor effects of YSL may be mediated by down regulation of CaM and PI3K subunits p85 and p110, influencing the signal transduction pathway in the tumor cells and perhaps overcoming the dysfunctional PI3K activity in tumors.
酪丝亮肽(YSL)是一种三肽化合物,在我们之前的研究中已显示出对肝细胞癌的抑制作用。这种抗肿瘤活性的机制涉及第二信使Ca(2+)。Ca(2+)通过Ca(2+)/钙调蛋白(CaM)途径影响细胞功能,并且Ca(2+)/CaM系统的异常与肿瘤的发生密切相关。此外,CaM与磷脂酰肌醇3激酶(PI3K)结合,从而增强PI3K的活性,促进细胞增殖。为了研究其抗肿瘤机制,我们研究了YSL对裸鼠人肝细胞癌BEL-7402异种移植瘤中CaM蛋白表达和mRNA水平、PI3K活性、PI3K调节亚基p85蛋白表达和mRNA水平以及PI3K催化亚基p110α和p110γ的mRNA水平的影响。我们的结果表明,YSL降低了CaM的mRNA水平和蛋白表达,抑制了PI3K的活性,并降低了PI3K调节亚基p85的mRNA水平和蛋白表达以及PI3K催化亚基p110α和p110γ的mRNA水平。因此,提示YSL的抗肿瘤作用可能是通过下调CaM和PI3K亚基p85和p110来介导的,影响肿瘤细胞中的信号转导途径,并且可能克服肿瘤中功能失调的PI3K活性。