Phatak P, Cookson J C, Dai F, Smith V, Gartenhaus R B, Stevens M F G, Burger A M
Department of Pharmacology and Experimental Therapeutics, Marlene and Stewart Greenebaum Cancer Center, School of Medicine, University of Maryland, Baltimore, MD 21201, USA.
Br J Cancer. 2007 Apr 23;96(8):1223-33. doi: 10.1038/sj.bjc.6603691. Epub 2007 Apr 3.
The pentacyclic acridinium methosulfate salt RHPS4 induces the 3'single-stranded guanine-rich telomeric overhang to fold into a G-quadruplex structure. Stabilisation of the latter is incompatible with an attachment of telomerase to the telomere and thus G-quadruplex ligands can effectively inhibit both the catalytic and capping functions of telomerase. In this study, we examined mechanisms underlying telomere uncapping by RHPS4 in uterus carcinoma cells (UXF1138L) with short telomeres and compared the susceptibility of bulk and clonogenic cancer cells to the G-quadruplex ligand. We show that treatment of UXF1138L cells with RHPS4 leads to the displacement of the telomerase catalytic subunit (hTERT) from the nucleus, induction of telomere-initiated DNA-damage signalling and chromosome fusions. We further report that RHPS4 is more potent against cancer cells that grow as colonies in soft agar than cells growing as monolayers. Human cord blood and HEK293T embryonic kidney cell colony forming units, however, were more resistant to RHPS4. RHPS4-treated UXF1138L xenografts had a decreased clonogenicity, showed loss of nuclear hTERT expression and an induction of mitotic abnormalities compared with controls. Although single-agent RHPS4 had limited in vivo efficacy, a combination of RHPS4 with the mitotic spindle poison Taxol caused tumour remissions and further enhancement of telomere dysfunction.
五环吖啶甲磺酸盐RHPS4可诱导富含鸟嘌呤的3'单链端粒悬突折叠成G-四链体结构。后者的稳定与端粒酶附着于端粒不兼容,因此G-四链体配体可有效抑制端粒酶的催化和加帽功能。在本研究中,我们研究了RHPS4在端粒较短的子宫癌细胞(UXF1138L)中引发端粒解帽的机制,并比较了群体癌细胞和克隆癌细胞对G-四链体配体的敏感性。我们发现,用RHPS4处理UXF1138L细胞会导致端粒酶催化亚基(hTERT)从细胞核中移位,诱导端粒引发的DNA损伤信号传导和染色体融合。我们进一步报告,与单层生长的细胞相比,RHPS4对在软琼脂中形成集落生长的癌细胞更有效。然而,人脐带血和HEK293T胚胎肾细胞集落形成单位对RHPS4更具抗性。与对照相比,经RHPS4处理的UXF1138L异种移植瘤的克隆形成能力降低,核hTERT表达丧失,并诱导有丝分裂异常。尽管单药RHPS4的体内疗效有限,但RHPS4与有丝分裂纺锤体毒物紫杉醇联合使用可导致肿瘤缓解并进一步增强端粒功能障碍。