Zhang Na, Zhang Shuo, Guan Hong, Hou Jian
State Key Laboratory of Agrobiotechnology and College of Biological Science, China Agricultural University, Yuan-Ming-Yuan West Road, Haidian District, Beijing, 100193, China.
Cytotechnology. 2019 Feb;71(1):117-125. doi: 10.1007/s10616-018-0271-z. Epub 2019 Jan 2.
Forced expression of human telomerase reverse transcriptase (hTERT) has been used to immortalize mammalian cells. Here, we report conditional extension of proliferative lifespan of adult sheep somatic cells by introducing tetracycline-inducible (Tet-on) expression of hTERT. After transfecting adult sheep fibroblasts with the vector for Tet-on induced conditional expression of hTERT, we obtained several hTERT-positive clones that exhibited extended-lifespan under the induction of tetracycline analogue, doxycycline. Further assays for a representative cell clone A3h38 indicated that the cells had a much stronger proliferative ability than control primary cells, as assessed by population doubling levels and single-cell cloning efficiency. A3h38 cells could maintain vigorous growth in culture for more than 150 days but they became senescent when hTERT expression was abrogated by withdrawal of doxycycline. Although having undergone long-term culture, the nuclei of A3h38 cells could support higher preimplantation development of somatic cell nuclear transfer embryos than control primary cells. These results demonstrated that conditional expression of hTERT could reversibly extend the lifespan of adult sheep fibroblasts, enhance their proliferation and maintain their ability to be reprogrammed after nuclear transfer. This strategy would also be applicable to many other somatic cell types in more species.
人类端粒酶逆转录酶(hTERT)的强制表达已被用于使哺乳动物细胞永生化。在此,我们报告通过引入四环素诱导型(Tet-on)hTERT表达来有条件地延长成年绵羊体细胞的增殖寿命。在用Tet-on诱导hTERT条件性表达的载体转染成年绵羊成纤维细胞后,我们获得了几个hTERT阳性克隆,这些克隆在四环素类似物强力霉素的诱导下表现出寿命延长。对一个代表性细胞克隆A3h38的进一步检测表明,通过群体倍增水平和单细胞克隆效率评估,这些细胞的增殖能力比对照原代细胞强得多。A3h38细胞在培养中可保持旺盛生长超过150天,但当通过撤除强力霉素消除hTERT表达时,它们会衰老。尽管经过长期培养,A3h38细胞的细胞核支持体细胞核移植胚胎的着床前发育能力高于对照原代细胞。这些结果表明,hTERT的条件性表达可可逆地延长成年绵羊成纤维细胞的寿命,增强其增殖能力,并维持其核移植后重编程的能力。该策略也适用于更多物种的许多其他体细胞类型。