Lindsay W. Black
Affiliations: | University of Maryland School of Medicine, Baltimore, MD, United States |
Area:
Biochemistry, Pathology, Microbiology BiologyGoogle:
"Lindsay Black"Children
Sign in to add traineeRichard G. Baumann | grad student | 2002 | University of Maryland Medical School |
Catherine L. Bair | grad student | 2005 | University of Maryland Medical School |
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Publications
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Wu W, Cheng N, Black LW, et al. (2020) Biphasic Packing of DNA and Internal Proteins in Bacteriophage T4 Heads Revealed by Bubblegram Imaging. Viruses. 12 |
Reilly ER, Abajorga MK, Kiser C, et al. (2020) A Cut above the Rest: Characterization of the Assembly of a Large Viral Icosahedral Capsid. Viruses. 12 |
Black LW, Yan B, Ray K. (2020) The T4 TerL Prohead Packaging Motor Does Not Drive DNA Translocation by a Proposed Dehydration Mechanism. Viruses. 12 |
Dixit AB, Ray K, Black LW. (2019) A viral small terminase subunit (TerS) twin ring pac synapsis DNA packaging model is supported by fluorescent fusion proteins. Virology. 536: 39-48 |
Weintraub ST, Redzuan NHM, Barton MK, et al. (2018) Global proteomic profiling of infection by a giant phage. Journal of Virology |
Thomas JA, Orwenyo J, Wang LX, et al. (2018) The Odd "RB" Phage-Identification of Arabinosylation as a New Epigenetic Modification of DNA in T4-Like Phage RB69. Viruses. 10 |
Ali B, Desmond MI, Mallory SA, et al. (2017) To Be or Not To Be T4: Evidence of a Complex Evolutionary Pathway of Head Structure and Assembly in Giant Salmonella Virus SPN3US. Frontiers in Microbiology. 8: 2251 |
Thomas JA, Benítez Quintana AD, Bosch MA, et al. (2016) Identification of essential genes in the Salmonella phage SPN3US reveals novel insights into giant phage head structure and assembly. Journal of Virology |
Hardies SC, Thomas JA, Black L, et al. (2016) Identification of structural and morphogenesis genes of Pseudoalteromonas phage φRIO-1 and placement within the evolutionary history of Podoviridae. Virology. 489: 116-27 |
Bryson AL, Hwang Y, Sherrill-Mix S, et al. (2015) Covalent Modification of Bacteriophage T4 DNA Inhibits CRISPR-Cas9. Mbio. 6 |