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  1. 1.   The fidelity of transcription in human cells
  2. Chung, Claire; Verheijen, Bert M; Zhang, Xinmin; Huang, Biao; Coakley, Aeowynn; McGann, Eric; Wade, Emily; Dinep-Schneider, Olivia; LaGosh, Jessica; Anagnostou, Maria-Eleni; Simpson, Stephen; Thomas, Kelly; Ernst, Mimi; Rattray, Allison; Lynch, Michael; Kashlev,Mikhail; Benayoun, Berenice A; Li, Zhongwei; Strathern,Jeffrey; Gout, Jean-Francois; Vermulst, Marc
  3. Proceedings of the National Academy of Sciences of the United States of America. 2023, Jan 31; 120(5): e2210038120.
  1. 2.   Craniofacial Development Is Fine-Tuned by Sox2
  2. Mandalos, Nikolaos Panagiotis; Dimou, Aikaterini; Gavala, Maria Angeliki; Lambraki, Efstathia; Remboutsika, Eumorphia
  3. Genes. 2023, Jan 31; 14(2):
  1. 3.   Regulation of Kit Expression in Early Mouse Embryos and ES Cells
  2. Todaro, Federica; Campolo, Federica; Barrios, Florencia; Pellegrini, Manuela; Di Cesare, Silvia; Tessarollo,Lino; Rossi, Pellegrino; Jannini, Emmanuele A.; Dolci, Susanna
  3. Stem cells (Dayton, Ohio). 2019, Mar; 37(3): 332-344.
  1. 4.   Embryonic Stem Cells in Development and Regenerative Medicine
  2. Dogan, Aysegul
  3. Advances in experimental medicine and biology. 2018, Feb 21; 1079: 1-15.
  1. 5.   TrkA in vivo function is negatively regulated by ubiquitination
  2. Kiris, E.; Wang, T.; Yanpallewar, S.; Dorsey, S. G.; Becker, J.; Bavari, S.; Palko, M. E.; Coppola, V.; Tessarollo, L.
  3. Journal of Neuroscience. 2014, 12-Mar; 34(11): 4090-8.
  1. 6.   Functional analysis of human BRCA2 variants using a mouse embryonic stem cell-based assay
  2. Kuznetsov, S. G.; Chang, S.; Sharan, S. K.
  3. Methods in molecular biology (Clifton, N.J.). 2010 653: 259-80.
  1. 7.   Expression of human BRCA1 variants in mouse ES cells allows functional analysis of BRCA1 mutations
  2. Chang, S.; Biswas, K.; Martin, B. K.; Stauffer, S.; Sharan, S. K.
  3. Journal of Clinical Investigation. 2009, Oct; 119(10): 3160-71.
  1. 8.   Epigenetic gene regulation in stem cells and correlation to cancer
  2. Mathews, L. A.; Crea, F.; Farrar, W. L.
  3. Differentiation. 2009, Jul; 78(1): 1-17.
  1. 9.   Isolation, microinjection and transfer of mouse blastocysts
  2. Reid, S. W.; Tessarollo, L.
  3. Methods in molecular biology (Clifton, N.J.). 2009 530: 269-285.
  1. 10.   Manipulating mouse embryonic stem cells
  2. Southon, E.; Tessarollo, L.
  3. Methods in molecular biology (Clifton, N.J.). 2009 530: 165-185.
  1. 11.   Gene targeting in mouse embryonic stem cells
  2. Tessarollo, L.; Palko, M. E.; Akagi, K.; Coppola, V.
  3. Methods in molecular biology (Clifton, N.J.). 2009 530: 141-164.
  1. 12.   Cell-specific responses to loss of cyclin-dependent kinases
  2. Berthet, C.; Kaldis, P.
  3. Oncogene. 2007, Jul; 26(31): 4469-4477.
  1. 13.   Global gene expression profiling reveals similarities and differences among mouse pluripotent stem cells of different origins and strains
  2. Sharova, L. V.; Sharov, A. A.; Piao, Y.; Shaik, N.; Sullivan, T.; Stewart, C. L.; Hogan, B. L. M.; Ko, M. S. H.
  3. Developmental Biology. 2007, Jul; 307(2): 446-459.
  1. 14.   Gene expression analysis of hematopoietic progenitor cells identifies Dlg7 as a potential stem cell gene
  2. Gudmundsson, K. O.; Thorsteinsson, L.; Sigurjonsson, O. E.; Keller, J. R.; Olafsson, K.; Egel, T.; Gudmundsson, S.; Rafnar, T.
  3. Stem Cells. 2007, Jun; 25(6): 1498-1506.
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