Chen Mianqiao, Tian Xiong, Xu Liqun, Wu Ruolan, He Haoming, Zhu Haibao, Xu Wencan, Wei Chi-Ju
Guangdong Provincial Key Laboratory of Marine Biotechnology, Institute of Marine Sciences, Shantou University, Shantou, Guangdong 515063, China.
Department of Endocrinology, the First Affiliated Hospital of Shantou University Medical College, Shantou, Guangdong 515041, China.
Mol Ther Nucleic Acids. 2022 Feb 2;27:1078-1091. doi: 10.1016/j.omtn.2022.01.022. eCollection 2022 Mar 8.
Genetic lineage tracing is indispensable to unraveling the origin, fate, and plasticity of cells. However, the intrinsic leakiness in the CreER- system raises concerns on data interpretation. Here, we reported the generation of a novel dual inducible CreER- system with superior labeling characteristics. This two-component system consists of membrane localized CreER (mCreER: CD8α-FRB-CS-CreER) and TEV protease (mTEVp: CD8α-FKBP-TEVp), which are fusion proteins incorporated with the chemically induced dimerization machinery. Rapamycin and tamoxifen induce sequential dimerization of FKBP and FRB, cleavage of CreER from the membrane, and translocation into the nucleus. The labeling leakiness in Ad293 cells reduced dramatically from more than 70% to less than 5%. This tight labeling feature depends largely on the association of mCreER with HSP90, which conceals the TEV protease cutting site between FRB and CreER and thus preventing uninduced cleavage of the membrane-tethering CreER. Membrane-bound CreER also diminished significantly cytotoxicity. Our studies showed mCreER under the control of the rat insulin promoter increased labeling specificity in MIN6 islet beta-cells. Viability and insulin secretion of MIN6 cells remained intact. Our results demonstrate that this novel system can provide more stringent temporal and spatial control of gene expression and will be useful in cell fate probing.
遗传谱系追踪对于揭示细胞的起源、命运和可塑性至关重要。然而,CreER系统内在的渗漏性引发了对数据解读的担忧。在此,我们报道了一种具有卓越标记特性的新型双诱导CreER系统的产生。这个双组分系统由膜定位的CreER(mCreER:CD8α-FRB-CS-CreER)和TEV蛋白酶(mTEVp:CD8α-FKBP-TEVp)组成,它们是与化学诱导二聚化机制结合的融合蛋白。雷帕霉素和他莫昔芬诱导FKBP和FRB的顺序二聚化、CreER从膜上的切割以及向细胞核的转位。Ad293细胞中的标记渗漏率从超过70%大幅降低至低于5%。这种紧密的标记特性很大程度上取决于mCreER与HSP90的结合,它掩盖了FRB和CreER之间的TEV蛋白酶切割位点,从而防止未诱导的膜结合CreER的切割。膜结合的CreER也显著降低了细胞毒性。我们的研究表明,在大鼠胰岛素启动子控制下的mCreER提高了MIN6胰岛β细胞中的标记特异性。MIN6细胞的活力和胰岛素分泌保持完整。我们的结果表明,这个新系统可以对基因表达提供更严格的时空控制,并将有助于细胞命运探索。