Roger D. Kornberg
Affiliations: | Stanford University, Palo Alto, CA |
Area:
Transcription, Gene Regulation, Structural BiologyWebsite:
http://nobelprize.org/nobel_prizes/chemistry/laureates/2006/kornberg.htmlGoogle:
"Roger Kornberg"Bio:
http://www.nasonline.org/member-directory/members/64194.html
https://searchworks.stanford.edu/view/1027814
Awarded the 2006 Nobel Prize in Chemistry for his studies of the molecular basis of eukaryotic transcription.
Mean distance: 7.6 (cluster 32) | S | N | B | C | P |
Cross-listing: GenetiTree
Parents
Sign in to add mentorPaul Berg | research assistant | Stanford Medical School | ||
Harden M. McConnell | grad student | 1972 | Stanford | |
(The diffusion of phospholipids in membranes) | ||||
Francis Harry Compton Crick | post-doc | MRC-LMB | ||
Aaron Klug | post-doc | MRC-LMB |
Children
Sign in to add traineePaul Lourdu Xavier | research assistant | 2016-2016 | Stanford University Medical School |
Bradley R. Cairns | grad student | Stanford | |
Joachim Griesenbeck | grad student | (Cell Biology Tree) | |
Ray Kelleher | grad student | Stanford Medical School (Neurotree) | |
Hiroshi Nojima | grad student | Stanford (Cell Biology Tree) | |
Alan B. Sachs | grad student | ||
Joan W. Conaway | grad student | 1979-1987 | Stanford Medical School (Cell Biology Tree) |
Neal F. Lue | grad student | 1990 | Stanford |
Grant J. Jensen | grad student | 2000 | Stanford |
Wei-Hau Chang | grad student | 2001 | Stanford |
Kenneth D. Westover | grad student | 2005 | Stanford |
Christopher J. Ackerson | grad student | 1999-2005 | Stanford |
Patrick Cramer | post-doc | Stanford | |
Seth A. Darst | post-doc | Stanford | |
Yuichiro Takagi | post-doc | Stanford Medical School (Cell Biology Tree) | |
Xin Liu | post-doc | 2008-2011 | Stanford |
Kenji Murakami | post-doc | 2007-2014 | Stanford |
Collaborators
Sign in to add collaboratorPeter R. David | collaborator | 1993-1998 | Stanford Medical School |
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Publications
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Kurnikov IV, Pereyaslavets L, Kamath G, et al. (2024) Neural Network Corrections to Intermolecular Interaction Terms of a Molecular Force Field Capture Nuclear Quantum Effects in Calculations of Liquid Thermodynamic Properties. Journal of Chemical Theory and Computation |
Kamath G, Illarionov A, Sakipov S, et al. (2024) Combining Force Fields and Neural Networks for an Accurate Representation of Bonded Interactions. The Journal of Physical Chemistry. A |
Illarionov A, Sakipov S, Pereyaslavets L, et al. (2023) Combining Force Fields and Neural Networks for an Accurate Representation of Chemically Diverse Molecular Interactions. Journal of the American Chemical Society. 145: 23620-23629 |
Nawrocki G, Leontyev I, Sakipov S, et al. (2022) Protein-Ligand Binding Free-Energy Calculations with ARROW─A Purely First-Principles Parameterized Polarizable Force Field. Journal of Chemical Theory and Computation |
Pereyaslavets L, Kamath G, Butin O, et al. (2022) Accurate determination of solvation free energies of neutral organic compounds from first principles. Nature Communications. 13: 414 |
Wang CH, Chen DH, Huang SH, et al. (2021) Sub-3 Å Cryo-EM Structures of Necrosis Virus Particles via the Use of Multipurpose TEM with Electron Counting Camera. International Journal of Molecular Sciences. 22 |
Zhang H, Chen DH, Mattoo RUH, et al. (2021) Mediator structure and conformation change. Molecular Cell |
Kornberg RD, Lorch Y. (2020) Primary Role of the Nucleosome. Molecular Cell. 79: 371-375 |
Feigerle JT, Kornberg RD. (2019) IID in 3D: Improved Resolution of Transcription Factor Structure by Cryo-Electron Microscopy. Biochemistry. 58: 2653-2654 |
Azubel M, Carter SD, Weiszmann J, et al. (2019) FGF21 trafficking in intact human cells revealed by cryo-electron tomography with gold nanoparticles. Elife. 8 |