Alasdair C. Steven

Affiliations: 
National Institutes of Health, Bethesda, MD, United States 
Website:
https://irp.nih.gov/pi/alasdair-steven
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"Alasdair Steven"
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Children

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Gökhan Tolun post-doc (Microtree)
Adam Zlotnick post-doc National Institutes of Health
Kay Grünewald post-doc 2002-2003
Takashi Ishikawa post-doc 2000-2004 National Institutes of Health (Cell Biology Tree)
Joaquin Ortega post-doc 2000-2004 McGill
J Bernard Heymann research scientist (Computational Biology Tree)
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Publications

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Buch MHC, Newcomb WW, Winkler DC, et al. (2021) Cryo-Electron Tomography of the Herpesvirus Procapsid Reveals Interactions of the Portal with the Scaffold and a Shift on Maturation. Mbio. 12
Heymann JB, Wang B, Newcomb WW, et al. (2020) The Mottled Capsid of the Giant Phage SPN3US, a Likely Maturation Intermediate with a Novel Internal Shell. Viruses. 12
Wu W, Watts NR, Cheng N, et al. (2020) Expression of quasi-equivalence and capsid dimorphism in the Hepadnaviridae. Plos Computational Biology. 16: e1007782
Bayfield OW, Steven AC, Antson AA. (2020) Cryo-EM structure reveals a molecular switch that safeguards virus against genome loss. Elife. 9
Bayfield OW, Steven AC, Antson AA. (2020) Author response: Cryo-EM structure in situ reveals a molecular switch that safeguards virus against genome loss Elife
Wu W, Watts NR, Cheng N, et al. (2020) HBV core-antigen related structures in the EMDB and PDB databases1. Plos Computational Biology
Heymann B, Wang B, Newcomb W, et al. (2020) Nested Protein Lattices in a Giant Phage Capsid Suggest Partial Maturation and a Residual Scaffold Microscopy and Microanalysis. 1-3
Watts NR, Palmer IW, Eren E, et al. (2019) Capsids of hepatitis B virus e antigen with authentic C-termini are stabilized by electrostatic interactions. Febs Letters
Bayfield OW, Klimuk E, Winkler DC, et al. (2019) Cryo-EM structure and in vitro DNA packaging of a thermophilic virus with supersized T=7 capsids. Proceedings of the National Academy of Sciences of the United States of America
Heymann JB, Vijayasarathy C, Huang RK, et al. (2019) Cryo-EM of retinoschisin branched networks suggests an intercellular adhesive scaffold in the retina. The Journal of Cell Biology
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