Nera, B., Huang, H., Hendrickson, E. A., & Xu, L. (2019). Both the classical and alternative non-homologous end joining pathways contribute to the fusion of drastically shortened telomeres induced by TRF2 overexpression. Cell Cycle.
Chicago Stili AlıntıNera, Bernadette, Hui-Shun Huang, Eric A. Hendrickson, ve Lifeng Xu. "Both the Classical and Alternative Non-homologous End Joining Pathways Contribute to the Fusion of Drastically Shortened Telomeres Induced By TRF2 Overexpression." Cell Cycle 2019.
MLA AlıntıNera, Bernadette, Hui-Shun Huang, Eric A. Hendrickson, ve Lifeng Xu. "Both the Classical and Alternative Non-homologous End Joining Pathways Contribute to the Fusion of Drastically Shortened Telomeres Induced By TRF2 Overexpression." Cell Cycle 2019.