Richard A. Young

Affiliations: 
Biology Massachusetts Institute of Technology, Cambridge, MA, United States 
Area:
gene control
Website:
https://biology.mit.edu/people/richard_young
Google:
"Richard Young"
Bio:

http://web.wi.mit.edu/young/
http://search.proquest.com/docview/303012111

Mean distance: 15.27 (cluster 32)
 
SNBCP
Cross-listing: Chemistry Tree

Parents

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Joan A. Steitz grad student 1979 Yale
 (Regulatory Signals in Ribosomal RNA Operons of Escherichia Coli)
Ronald W. Davis post-doc Stanford (Evolution Tree)

Children

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Michael Nonet grad student 1985-1989 MIT
Rollin B. Johnson grad student 1986-1989 MIT
Daria Hekmatpanah grad student 1985-1991 MIT
Charles Scafe grad student 1985-1991 MIT
Anthony J. Koleske grad student 1989-1993 Whitehead Institute (MIT)
Craig Thompson grad student 1990-1994 MIT
Ann-Marie White grad student 1992-1995 MIT
David Chao grad student 1992-1996 MIT
Ellen Gadbois grad student 1991-1997 MIT
Christoph J. Hengartner grad student 1991-1999 MIT
Tony Lee grad student 1994-2000 MIT
Katja Kerkmann grad student 1999-2000 MIT
Karen Ryan Flynn grad student 1996-2001 MIT
John J. Wyrick grad student 1997-2001 MIT (Chemistry Tree)
Gniewko Lubecki grad student 2000-2001 MIT
Ezra G. Jennings grad student 1996-2002 MIT
Rhonda Harrison grad student 1999-2003 MIT (Chemistry Tree)
Nicola J. Rinaldi grad student 2000-2004 MIT
Megan Cole grad student 2004-2008 MIT
Sarah Johnstone grad student 2004-2008 MIT
Alexander Marson grad student 2005-2008 MIT (Chemistry Tree)
Jamie Newman grad student 2006-2010 MIT
Charles Lin grad student 2009-2013 MIT
Heather Hoke grad student 2010-2014 MIT
Jessica Reddy grad student 2010-2016 MIT
Alicia Zamudio grad student 2016-2020 MIT
Lena Afeyan grad student 2019-2022 MIT
Nancy Ann Woychik post-doc 1986-1991 MIT (Chemistry Tree)
Frank Holstege post-doc 1997-1999 Whitehead Institute
Helen Causton post-doc 1994-2000 Whitehead Institute
Bing Ren post-doc 1998-2001 Whitehead Institute (Chemistry Tree)
Ann Schlesinger post-doc 1999-2002 MIT (Chemistry Tree)
Francois Robert post-doc 1999-2003 (Cell & Gene Therapy Tree)
Julia Zeitlinger post-doc 2000-2007 Whitehead Institute
Laurie A. Boyer post-doc 2004-2007 Whitehead Institute (MIT) (Chemistry Tree)
Matthew G. Guenther post-doc 2002-2012 (Cell Biology Tree)
Alan C. Mullen post-doc 2007-2012 Whitehead Institute (Cell Biology Tree)
Jill Dowen post-doc 2010-2015 Whitehead Institute
Alla Sigova post-doc 2007-2016 Whitehead Institute
Stuart Levine post-doc 2004-2018 MIT (Chemistry Tree)
Benjamin Sabari post-doc 2016-2019 Whitehead Institute
Jie Wang post-doc 2020-2021 (Chemistry Tree)
BETA: Related publications

Publications

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Liu Y, Flamier A, Bell GW, et al. (2024) MECP2 directly interacts with RNA polymerase II to modulate transcription in human neurons. Neuron
Kilgore HR, Chinn I, Mikhael PG, et al. (2024) Chemical codes promote selective compartmentalization of proteins. Biorxiv : the Preprint Server For Biology
Dall'Agnese A, Young R. (2023) Regulatory architecture of cell identity genes and housekeeping genes. Trends in Cell Biology. 33: 1010-1013
Oksuz O, Henninger JE, Warneford-Thomson R, et al. (2023) Transcription factors interact with RNA to regulate genes. Molecular Cell
Dejosez M, Dall'Agnese A, Ramamoorthy M, et al. (2023) Regulatory architecture of housekeeping genes is driven by promoter assemblies. Cell Reports. 42: 112505
Yao Y, Fong Ng J, Park WD, et al. (2023) CDK7 controls E2F- and MYC-driven proliferative and metabolic vulnerabilities in multiple myeloma. Blood
Dall'Agnese A, Platt JM, Zheng MM, et al. (2022) The dynamic clustering of insulin receptor underlies its signaling and is disrupted in insulin resistance. Nature Communications. 13: 7522
Ma H, Zwaan E, Guo YE, et al. (2022) The nuclear receptor THRB facilitates differentiation of human PSCs into more mature hepatocytes. Cell Stem Cell. 29: 1611
Morelli E, Fulciniti M, Samur MK, et al. (2022) A MIR17HG-derived Long Noncoding RNA Provides an Essential Chromatin Scaffold for Protein Interaction and Myeloma Growth. Blood
Hsu A, Duan Q, Day DS, et al. (2022) Targeting transcription in heart failure via CDK7/12/13 inhibition. Nature Communications. 13: 4345
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