Ottina Eleonora, Peperzak Victor, Schoeler Katia, Carrington Emma, Sgonc Roswitha, Pellegrini Marc, Preston Simon, Herold Marco J, Strasser Andreas, Villunger Andreas
Division of Developmental Immunology, Biocenter, Medical University of Innsbruck, Innrain 80, 6020, Innsbruck, Austria.
The Walter and Eliza Hall Institute for Medical Research, 1G Royal Parade, Victoria, 3052, Australia.
Nat Commun. 2017 Oct 18;8(1):1028. doi: 10.1038/s41467-017-01022-4.
The Tet-On/Off system for conditional transgene expression constitutes state-of-the-art technology to study gene function by facilitating inducible expression in a timed and reversible manner. Several studies documented the suitability and versatility of this system to trace lymphocyte fate and to conditionally express oncogenes or silence tumour suppressor genes in vivo. Here, we show that expression of the tetracycline/doxycycline-controlled Tet-transactivator, while tolerated well during development and in immunologically unchallenged animals, impairs the expansion of antigen-stimulated T and B cells and thereby curtails adaptive immune responses in vivo. Transactivator-mediated cytotoxicity depends on DNA binding, but can be overcome by BCL2 overexpression, suggesting that apoptosis induction upon lymphocyte activation limits cellular and humoral immune responses. Our findings suggest a possible system-intrinsic biological bias of the Tet-On/Off system in vivo that will favour the outgrowth of apoptosis resistant clones, thus possibly confounding data published using such systems.
用于条件性转基因表达的Tet-On/Off系统是一种先进技术,通过实现定时和可逆的诱导表达来研究基因功能。多项研究证明了该系统在体内追踪淋巴细胞命运、条件性表达癌基因或沉默肿瘤抑制基因方面的适用性和多功能性。在此,我们表明,四环素/强力霉素控制的Tet反式激活因子的表达,虽然在发育过程中和未受免疫挑战的动物中耐受性良好,但会损害抗原刺激的T细胞和B细胞的扩增,从而在体内削弱适应性免疫反应。反式激活因子介导的细胞毒性取决于DNA结合,但可通过BCL2过表达克服,这表明淋巴细胞激活时的凋亡诱导限制了细胞免疫和体液免疫反应。我们的研究结果表明,Tet-On/Off系统在体内可能存在系统固有的生物学偏差,这将有利于抗凋亡克隆的生长,从而可能混淆使用此类系统发表的数据。