Resultats de la cerca - Suk‐Hee Lee
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Mapping of Amino Acid Residues in the p34 Subunit of Human Single-stranded DNA-binding Protein Phosphorylated by DNA-dependent Protein Kinase and Cdc2 Kinase in Vitro per Hongwu Niu, Hediye Erdjument‐Bromage, Zhen-Qiang Pan, Suk‐Hee Lee, Paul Tempst, Jerard Hurwitz
Publicat 1997Artigo -
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The SET domain protein Metnase mediates foreign DNA integration and links integration to nonhomologous end-joining repair per Suk‐Hee Lee, Masahiko Oshige, Stephen T. Durant, Kanwaldeep Kaur Rasila, Elizabeth A. Williamson, H. E. Ramsey, Lori Kwan, Jac A. Nickoloff, Robert Hromas
Publicat 2005Artigo -
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Functional characterization of TRPV4 as an osmotically sensitive ion channel in porcine articular chondrocytes per Mimi N. Phan, Holly A. Leddy, Bartholomew J. Votta, Sanjay Kumar, Dana S. Levy, David B. Lipshutz, Suk‐Hee Lee, Wolfgang Liedtke, Farshid Guilak
Publicat 2009Artigo -
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Metnase promotes restart and repair of stalled and collapsed replication forks per Leyma P. De Haro, Justin Wray, Elizabeth A. Williamson, Stephen T. Durant, Lori Corwin, Amanda C. Gentry, Neil Osheroff, Suk‐Hee Lee, Robert Hromas, Jac A. Nickoloff
Publicat 2010Artigo -
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Methylation of histone H3 lysine 36 enhances DNA repair by nonhomologous end-joining per Sheema Fnu, Elizabeth A. Williamson, Leyma P. De Haro, Mark A. Brenneman, Justin Wray, Montaser Shaheen, Krishnan Radhakrishnan, Suk‐Hee Lee, Jac A. Nickoloff, Robert Hromas
Publicat 2010Artigo -
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HOXA10 Controls Osteoblastogenesis by Directly Activating Bone Regulatory and Phenotypic Genes per Mohammad Q. Hassan, Rahul S. Tare, Suk‐Hee Lee, Matthew Mandeville, Brian Weiner, Martı́n Montecino, André J. van Wijnen, Janet L. Stein, Gary S. Stein, Jane B. Lian
Publicat 2007Artigo -
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BMP2 Commitment to the Osteogenic Lineage Involves Activation of Runx2 by DLX3 and a Homeodomain Transcriptional Network per Mohammad Q. Hassan, Rahul S. Tare, Suk‐Hee Lee, Matthew Mandeville, María I. Morasso, Amjad Javed, André J. van Wijnen, Janet L. Stein, Gary S. Stein, Jane B. Lian
Publicat 2006Artigo -
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The Polymodal Ion Channel Transient Receptor Potential Vanilloid 4 Modulates Calcium Flux, Spiking Rate, and Apoptosis of Mouse Retinal Ganglion Cells per Daniel A. Ryskamp, Paul Witkovsky, Péter Barabás, Wei Huang, Christopher L. Koehler, Nikolay P. Akimov, Suk‐Hee Lee, Shiwani Chauhan, Wei Xing, René C. Renterı́a, Wolfgang Liedtke, David Križaj
Publicat 2011Artigo
Eines de cerca:
Matèries relacionades
Biology
Cell biology
Gene
DNA
Genetics
DNA repair
Biochemistry
Medicine
Molecular biology
Internal medicine
Chemistry
Receptor
Transcription factor
TRPV4
Cancer research
DNA replication
DNA-binding protein
Nucleotide excision repair
Transient receptor potential channel
DNA damage
Histone
Replication protein A
Transposable element
Transposase
Cancer
Cell cycle
Chromatin
DNA mismatch repair
Gene expression
HMG-box