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B.S. Stanford University Biological Sciences Ph.D. University of Wisconsin Molecular Biology

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An Intrinsically Disordered Region of the DNA Repair Protein Nbs1 Is a Species-Specific Barrier to Herpes Simplex Virus 1 in Primates. Lou, Dianne I; Kim, Eui Tae; Meyerson, Nicholas R; Pancholi, Neha J; Mohni, Kareem N; Enard, David; Petrov, Dmitri A; Weller, Sandra K; Weitzman, Matthew D; Sawyer, Sara L Cell host & microbe 2016 Aug;20(2):178-88 ICP8 Filament Formation is Essential for Replication Compartment Formation During Herpes Simplex Virus Infection. Darwish, Anthar S; Grady, Lorry M; Bai, Ping; Weller, Sandra K Journal of virology 2015 Dec; Structural Characterization of Interaction between Human Ubiquitin-specific Protease 7 and Immediate-Early Protein ICP0 of Herpes Simplex Virus-1. Pozhidaeva, Alexandra K; Mohni, Kareem N; Dhe-Paganon, Sirano; Arrowsmith, Cheryl H; Weller, Sandra K; Korzhnev, Dmitry M; Bezsonova, Irina Journal of Biological Chemistry 2015 Jul;290(38):22907-22918 HSV cheats the executioner. Mossman, Karen L; Weller, Sandra K Cell host & microbe 2015 Feb;17(2):148-51 The putative herpes simplex virus 1 chaperone protein UL32 modulates disulfide bond formation during infection. Albright, Brandon S; Kosinski, Athena; Szczepaniak, Renata; Cook, Elizabeth A; Stow, Nigel D; Conway, James F; Weller, Sandra K Journal of virology 2014 Oct;89(1):443-53 Recombination promoted by DNA viruses: phage λ to herpes simplex virus. Weller, Sandra K; Sawitzke, James A Annual review of microbiology 2014 Sep;68237-58 Structure of the herpes simplex virus 1 genome: manipulation of nicks and gaps can abrogate infectivity and alter the cellular DNA damage response. Smith, Samantha; Reuven, Nina; Mohni, Kareem N; Schumacher, April J; Weller, Sandra K Journal of virology 2014 Jun;88(17):10146-56 Herpes simplex virus type 1 single strand DNA binding protein and helicase/primase complex disable cellular ATR signaling. Mohni, Kareem N; Smith, Samantha; Dee, Alexander R; Schumacher, April J; Weller, Sandra K PLoS pathogens 2013 Oct;9(10):e1003652 The DNA helicase-primase complex as a target for herpes viral infection. Weller, Sandra K; Kuchta, Robert D Expert opinion on therapeutic targets 2013 Aug;17(10):1119-32 Efficient herpes simplex virus 1 replication requires cellular ATR pathway proteins. Mohni, Kareem N; Dee, Alexander R; Smith, Samantha; Schumacher, April J; Weller, Sandra K Journal of virology 2013 Jan;87(1):531-42 Herpes simplex viruses: mechanisms of DNA replication. Weller, Sandra K; Coen, Donald M Cold Spring Harbor perspectives in biology 2012 Sep;4(9):a013011 The HSV-1 exonuclease, UL12, stimulates recombination by a single strand annealing mechanism. Schumacher, April J; Mohni, Kareem N; Kan, Yinan; Hendrickson, Eric A; Stark, Jeremy M; Weller, Sandra K PLoS pathogens 2012 Jan;8(8):e1002862 DNA mismatch repair proteins are required for efficient herpes simplex virus 1 replication. Mohni, Kareem N; Mastrocola, Adam S; Bai, Ping; Weller, Sandra K; Heinen, Christopher D Journal of virology 2011 Dec;85(23):12241-53 Disulfide bond formation contributes to herpes simplex virus capsid stability and retention of pentons. Szczepaniak, Renata; Nellissery, Jacob; Jadwin, Joshua A; Makhov, Alexander M; Kosinski, Athena; Conway, James F; Weller, Sandra K Journal of virology 2011 Sep;85(17):8625-34 Disulfide bond formation in the herpes simplex virus 1 UL6 protein is required for portal ring formation and genome encapsidation. Albright, Brandon S; Nellissery, Jacob; Szczepaniak, Renata; Weller, Sandra K Journal of virology 2011 Sep;85(17):8616-24 Herpes simplex virus type 1 helicase-primase: DNA binding and consequent protein oligomerization and primase activation. Chen, Yan; Bai, Ping; Mackay, Shannon; Korza, George; Carson, John H; Kuchta, Robert D; Weller, Sandra K Journal of virology 2011 Jan;85(2):968-78 ATR and ATRIP are recruited to herpes simplex virus type 1 replication compartments even though ATR signaling is disabled. Mohni, Kareem N; Livingston, Christine M; Cortez, David; Weller, Sandra K Journal of virology 2010 Dec;84(23):12152-64 Physical interaction between the herpes simplex virus type 1 exonuclease, UL12, and the DNA double-strand break-sensing MRN complex. Balasubramanian, Nandakumar; Bai, Ping; Buchek, Gregory; Korza, George; Weller, Sandra K Journal of virology 2010 Dec;84(24):12504-14 Identification of rep-associated factors in herpes simplex virus type 1-induced adeno-associated virus type 2 replication compartments. Nicolas, Armel; Alazard-Dany, Nathalie; Biollay, Coline; Arata, Loredana; Jolinon, Nelly; Kuhn, Lauriane; Ferro, Myriam; Weller, Sandra K; Epstein, Alberto L; Salvetti, Anna; Greco, Anna Journal of virology 2010 Sep;84(17):8871-87 Herpes simplex virus type 1 immediate-early protein ICP22 is required for VICE domain formation during productive viral infection. Bastian, Thomas W; Livingston, Christine M; Weller, Sandra K; Rice, Stephen A Journal of virology 2010 Mar;84(5):2384-94 Herpes simplex virus reorganizes the cellular DNA repair and protein quality control machinery. Weller, Sandra K PLoS pathogens 2010 Jan;6(11):e1001105 Virus-Induced Chaperone-Enriched (VICE) domains function as nuclear protein quality control centers during HSV-1 infection. Livingston, Christine M; Ifrim, Marius F; Cowan, Ann E; Weller, Sandra K PLoS pathogens 2009 Oct;5(10):e1000619 Oligomerization of ICP4 and rearrangement of heat shock proteins may be important for herpes simplex virus type 1 prereplicative site formation. Livingston, Christine M; DeLuca, Neal A; Wilkinson, Dianna E; Weller, Sandra K Journal of virology 2008 Jul;82(13):6324-36 Direct interaction between the N- and C-terminal portions of the herpes simplex virus type 1 origin binding protein UL9 implies the formation of a head-to-tail dimer. Chattopadhyay, Soma; Weller, Sandra K Journal of virology 2007 Dec;81(24):13659-67 A putative leucine zipper within the herpes simplex virus type 1 UL6 protein is required for portal ring formation. Nellissery, Jacob K; Szczepaniak, Renata; Lamberti, Carmela; Weller, Sandra K Journal of virology 2007 Sep;81(17):8868-77

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