Yeo Marie, Rha Sung Young, Jeung Hei Cheul, Hu Shen Xiong, Yang Sang Hwa, Kim Yang Seok, An Sung Whan, Chung Hyun Cheol
Cancer Metastasis Research Center, Yonsei Cancer Center, Department of Internal Medicine, Yonsei University College of Medicine, Seoul, South Korea.
Int J Cancer. 2005 Apr 10;114(3):484-9. doi: 10.1002/ijc.20720.
Ribozyme possesses specific endoribonuclease activity and catalyzes the hydrolysis of specific phosphodiester bonds, which results in the cleavage of target RNA sequences. Here, we evaluated the ability of hammerhead ribozymes targeting human telomerase RNA (hTR) to inhibit the catalytic activity of telomerase and the proliferation of cancer cells. Hammerhead ribozymes were designed against 7 NUX sequences located in open loops of the hTR secondary structure. We verified the ribozyme specificity by in vitro cleavage assay by using a synthetic RNA substrate. Subsequently, we introduced ribozyme expression vector into human breast tumor MCF-7 cells and assessed the biologic effects of ribozyme. Hammerhead ribozyme R1 targeting the template region of hTR efficiently cleaved hTR in vitro, and stable transfectants of this ribozyme induced the degradation of target hTR RNA and attenuated telomerase activity in MCF-7 cells. Moreover, the ribozyme R1 transfectant displayed a significant telomere shortening and a lower proliferation rate than parental cells. Clones with reduced proliferation capacity showed enlarged senescence-like shapes or highly differentiated dendritic morphologies of apoptosis. In conclusion, the inhibition of telomerase activity by hammerhead ribozyme targeting the template region of the hTR presents a promising strategy for inhibiting the growth of human breast cancer cells.
核酶具有特异性的核糖核酸内切酶活性,可催化特定磷酸二酯键的水解,从而导致靶RNA序列的切割。在此,我们评估了靶向人端粒酶RNA(hTR)的锤头状核酶抑制端粒酶催化活性和癌细胞增殖的能力。针对位于hTR二级结构开放环中的7个NUX序列设计了锤头状核酶。我们通过使用合成RNA底物的体外切割试验验证了核酶的特异性。随后,我们将核酶表达载体导入人乳腺肿瘤MCF-7细胞,并评估了核酶的生物学效应。靶向hTR模板区域的锤头状核酶R1在体外有效切割hTR,该核酶的稳定转染子诱导靶hTR RNA降解并减弱MCF-7细胞中的端粒酶活性。此外,核酶R1转染子与亲本细胞相比,显示出明显的端粒缩短和较低的增殖率。增殖能力降低的克隆呈现出增大的衰老样形态或高度分化的凋亡树突状形态。总之,靶向hTR模板区域的锤头状核酶抑制端粒酶活性为抑制人乳腺癌细胞生长提供了一种有前景的策略。