Jen-Wei Huang, Ph.D.
Affiliations: | 2013 | Molecular and Cellular Biology | University of Washington, Seattle, Seattle, WA |
Area:
Cell Biology, Molecular BiologyGoogle:
"Jen-Wei Huang"Parents
Sign in to add mentorToshiyasu Taniguchi | grad student | 2013 | University of Washington | |
(MicroRNA-103 and 107 Target RAD51 and RAD51D to Regulate Homologous Recombination and Enhance Cellular Sensitivity to DNA Damaging Agents.) |
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Publications
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Acharya A, Bret H, Huang JW, et al. (2023) Mechanism of DNA unwinding by hexameric MCM8-9 in complex with HROB. Research Square |
Acharya A, Bret H, Huang JW, et al. (2023) Mechanism of DNA unwinding by hexameric MCM8-9 in complex with HROB. Biorxiv : the Preprint Server For Biology |
Joseph SA, Taglialatela A, Leuzzi G, et al. (2020) Time for remodeling: SNF2-family DNA translocases in replication fork metabolism and human disease. Dna Repair. 95: 102943 |
Huang JW, Acharya A, Taglialatela A, et al. (2020) MCM8IP activates the MCM8-9 helicase to promote DNA synthesis and homologous recombination upon DNA damage. Nature Communications. 11: 2948 |
Nambiar TS, Billon P, Diedenhofen G, et al. (2019) Stimulation of CRISPR-mediated homology-directed repair by an engineered RAD18 variant. Nature Communications. 10: 3395 |
Taglialatela A, Alvarez S, Leuzzi G, et al. (2017) Restoration of Replication Fork Stability in BRCA1- and BRCA2-Deficient Cells by Inactivation of SNF2-Family Fork Remodelers. Molecular Cell. 68: 414-430.e8 |
Vujanovic M, Krietsch J, Raso MC, et al. (2017) Replication Fork Slowing and Reversal upon DNA Damage Require PCNA Polyubiquitination and ZRANB3 DNA Translocase Activity. Molecular Cell. 67: 882-890.e5 |
Calses PC, Dhillon KK, Tucker N, et al. (2017) DGCR8 Mediates Repair of UV-Induced DNA Damage Independently of RNA Processing. Cell Reports. 19: 162-174 |
Castella M, Jacquemont C, Thompson EL, et al. (2015) FANCI Regulates Recruitment of the FA Core Complex at Sites of DNA Damage Independently of FANCD2. Plos Genetics. 11: e1005563 |
Huang JW, Pan C, Tran S, et al. (2015) Superior Current Carrying Capacity of Boron Nitride Encapsulated Carbon Nanotubes with Zero-Dimensional Contacts. Nano Letters |