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Brian David Dynlacht, PhD

Affiliations: 
Pathology New York University, New York, NY, United States 
Area:
Mammalian Transcription
Website:
http://pathology.med.nyu.edu/people/faculty/dynlacht-brian-d
Google:
"Brian Dynlacht"
Mean distance: 9.09
 
SNBCP

Parents

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Robert Tjian grad student 1987-1992 UC Berkeley

Children

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Christopher J Bowman grad student NYU
Karin C. Lilja grad student NYU
Yan Yang grad student NYU
Nan Zhang grad student NYU
Hieu Cam grad student 1997-2002 Harvard
Joseph Rayman grad student 1998-2002 Harvard (Neurotree)
Alexander Spektor grad student 2007 NYU
Diego Acosta-Alvear grad student 2008 NYU
Jemmie Cheng grad student 2008-2014 NYU School of Medicine
Ji Li grad student 2009-2014 NYU
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Publications

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Shin J, Mir H, Khurram MA, et al. (2023) Allosteric regulation of CAD modulates de novo pyrimidine synthesis during the cell cycle. Nature Metabolism
Wang L, Paudyal SC, Kang Y, et al. (2021) Regulators of tubulin polyglutamylation control nuclear shape and cilium disassembly by balancing microtubule and actin assembly. Cell Research
Wang Y, Hou L, Ardehali MB, et al. (2020) Elongin A regulates transcription through enhanced RNA polymerase processivity. The Journal of Biological Chemistry
Zhang N, Mendieta-Esteban J, Magli A, et al. (2020) Muscle progenitor specification and myogenic differentiation are associated with changes in chromatin topology. Nature Communications. 11: 6222
Hou L, Wang Y, Liu Y, et al. (2019) Paf1C regulates RNA polymerase II progression by modulating elongation rate. Proceedings of the National Academy of Sciences of the United States of America
Magli A, Baik J, Pota P, et al. (2019) Pax3 cooperates with Ldb1 to direct local chromosome architecture during myogenic lineage specification. Nature Communications. 10: 2316
Magli A, Baik J, Mills LJ, et al. (2019) Time-dependent Pax3-mediated chromatin remodeling and cooperation with Six4 and Tead2 specify the skeletal myogenic lineage in developing mesoderm. Plos Biology. 17: e3000153
Wang L, Failler M, Fu W, et al. (2018) A distal centriolar protein network controls organelle maturation and asymmetry. Nature Communications. 9: 3938
Wang L, Dynlacht BD. (2018) The regulation of cilium assembly and disassembly in development and disease. Development (Cambridge, England). 145
Joachim J, Razi M, Judith D, et al. (2017) Centriolar Satellites Control GABARAP Ubiquitination and GABARAP-Mediated Autophagy. Current Biology : Cb
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