Biroccio Annamaria, Amodei Sarah, Benassi Barbara, Scarsella Marco, Cianciulli Anna, Mottolese Marcella, Del Bufalo Donatella, Leonetti Carlo, Zupi Gabriella
Experimental Chemotherapy Laboratory, Regina Elena Cancer Institute, Rome, Italy.
Oncogene. 2002 May 2;21(19):3011-9. doi: 10.1038/sj.onc.1205415.
c-Myc is involved in the control of telomerase activity through its ability to induce the expression of the catalytic subunit of the enzyme, the human telomerase reverse transcriptase (hTERT). Our aim was to study whether telomerase plays a critical role in c-Myc-dependent tumorigenicity of melanoma cells. By using M14-derived clones, expressing low levels of c-Myc, we demonstrated that the down-regulation of c-Myc reduced cell proliferation rate, cloning efficiency and tumorigenicity and increased the apoptotic rate. Decreased tumorigenic potential correlated with reduced hTERT gene expression, telomerase activity and telomere shortening. Introduction of wild-type hTERT into these cells increased their proliferation rate and partially re-established their tumorigenic potential, at early passages, even though the apoptotic rate of the population remained unaltered. After several in vitro passages, hTERT-mediated cell proliferation made the tumorigenic potential of the c-Myc low-expressing clones comparable to that of the M14 parental line. Over-expression of the mutant biologically inactive hTERT did not drive cells to proliferate. In conclusion, our results demonstrate that the reconstitution of high levels of telomerase activity reverses the low tumorigenicity due to low c-Myc expression.
c-Myc通过诱导端粒酶催化亚基——人端粒酶逆转录酶(hTERT)的表达,参与端粒酶活性的调控。我们的目的是研究端粒酶在黑色素瘤细胞c-Myc依赖性致瘤性中是否起关键作用。通过使用表达低水平c-Myc的M14衍生克隆,我们证明c-Myc的下调降低了细胞增殖率、克隆效率和致瘤性,并增加了凋亡率。致瘤潜力的降低与hTERT基因表达减少、端粒酶活性降低和端粒缩短相关。将野生型hTERT导入这些细胞可提高其增殖率,并在早期传代时部分恢复其致瘤潜力,尽管细胞群体的凋亡率保持不变。经过几次体外传代后,hTERT介导的细胞增殖使低表达c-Myc的克隆的致瘤潜力与M14亲本系相当。突变的无生物学活性的hTERT的过表达不会驱动细胞增殖。总之,我们的结果表明,高水平端粒酶活性的重建可逆转由于c-Myc低表达导致的低致瘤性。