Grand Cory L, Han Haiyong, Muñoz Rubén M, Weitman Steve, Von Hoff Daniel D, Hurley Laurence H, Bearss David J
Arizona Cancer Center, Tucson, Arizona 85724, USA.
Mol Cancer Ther. 2002 Jun;1(8):565-73.
Cationic porphyrins are being studied as possible anticancer agents because of their ability to bind to and stabilize DNA guanine quadruplexes (G-quadruplexes). We have shown previously that the cationic porphyrin TMPyP4 is able to bind to and stabilize G-quadruplexes in human telomere sequences, resulting in inhibition of telomerase activity. To better understand the mechanism of action behind telomerase inhibition by TMPyP4, we performed a cDNA microarray analysis on cells treated with TMPyP4 and TMPyP2, a positional isomer of TMPyP4 that has low affinity for G-quadruplexes. Analysis of time course data from the microarray experiments revealed that TMPyP4 and TMPyP2 treatment altered the expression of several gene clusters. We found that c-MYC, an oncogene nearly ubiquitous in human tumors that bears the potential in its promoter to form a G-quadruplex, was among the genes specifically down-regulated by TMPyP4, but not by TMPyP2. The hTERT gene, which encodes the catalytic subunit of telomerase, is transcriptionally regulated by c-MYC, and we have found that TMPyP4 also causes a decrease in human telomerase reverse transcriptase transcripts, suggesting two possible mechanisms for the effect of TMPyP4 on telomerase activity. We also show that TMPyP4, but not TMPyP2, is able to prolong survival and decrease tumor growth rates in two xenograft tumor models. We believe that, because of the actions of TMPyP4 in decreasing both c-MYC protein levels and telomerase activity, as well as its anticancer effects in vivo, it is a worthwhile agent to pursue and develop further.
阳离子卟啉因其能够结合并稳定DNA鸟嘌呤四链体(G-四链体)而作为潜在的抗癌剂进行研究。我们之前已经表明,阳离子卟啉TMPyP4能够结合并稳定人类端粒序列中的G-四链体,从而抑制端粒酶活性。为了更好地理解TMPyP4抑制端粒酶活性背后的作用机制,我们对用TMPyP4和TMPyP2(TMPyP4的位置异构体,对G-四链体亲和力低)处理的细胞进行了cDNA微阵列分析。对微阵列实验的时间进程数据的分析表明,TMPyP4和TMPyP2处理改变了几个基因簇的表达。我们发现,c-MYC是一种在人类肿瘤中几乎普遍存在的癌基因,其启动子有形成G-四链体的潜力,是被TMPyP4特异性下调但不被TMPyP2下调的基因之一。编码端粒酶催化亚基的hTERT基因受c-MYC转录调控,我们发现TMPyP4也会导致人类端粒酶逆转录酶转录本减少,这提示了TMPyP4影响端粒酶活性的两种可能机制。我们还表明,在两种异种移植肿瘤模型中,TMPyP4而非TMPyP2能够延长生存期并降低肿瘤生长速率。我们认为,由于TMPyP4在降低c-MYC蛋白水平和端粒酶活性方面的作用以及其在体内的抗癌作用,它是一种值得进一步研究和开发的药物。