Steven J. Metallo

2001- Chemistry Georgetown University, Washington, DC 
chemical biology, biophysical chemistry, and surface chemistry
"Steven Joseph Metallo"

Mean distance: 6.53


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Alanna Schepartz grad student 1999 Yale
 (Mechanism and specificity of dimeric transcription factors)
George M. Whitesides post-doc 1998-2001 Harvard
 (multivalency and surface chemistry)


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Sarai Obando grad student 2008 Georgetown
Dalia Issa Hammoudeh grad student 2009 Georgetown
Ariele Giorgio Viacava Follis grad student 2009 Georgetown
Jerez A. Te grad student 2010 Georgetown
Anthony D. Kammerich grad student 2011 Georgetown
Alison Mae Reed grad student 2011 Georgetown
David A. Gaviria grad student 2013 Georgetown
Lisette M. Fred grad student 2009-2016 Georgetown
Kaitlyn P. Gerhart grad student 2009-2016 Georgetown
Veselin Svetoslavov Dobrev grad student 2010-2018 Georgetown
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Dobrev VS, Fred LM, Gerhart KP, et al. (2018) Characterization of the Binding of Small Molecules to Intrinsically Disordered Proteins. Methods in Enzymology. 611: 677-702
Uversky VN, Davé V, Iakoucheva LM, et al. (2014) Pathological unfoldomics of uncontrolled chaos: Intrinsically disordered proteins and human diseases Chemical Reviews. 114: 6844-6879
Rabjohns JL, Park YD, Dehdashti J, et al. (2014) A high-throughput screening assay for fungicidal compounds against Cryptococcus neoformans. Journal of Biomolecular Screening. 19: 270-7
Dunker AK, Babu MM, Barbar E, et al. (2013) What's in a name? Why these proteins are intrinsically disordered: Why these proteins are intrinsically disordered. Intrinsically Disordered Proteins. 1: e24157
Barber-Rotenberg JS, Selvanathan SP, Kong Y, et al. (2012) Single enantiomer of YK-4-279 demonstrates specificity in targeting the oncogene EWS-FLI1. Oncotarget. 3: 172-82
Reed AM, Metallo SJ. (2010) Oriented protein adsorption to gold nanoparticles through a genetically encodable binding motif. Langmuir : the Acs Journal of Surfaces and Colloids. 26: 18945-50
Metallo SJ. (2010) Intrinsically disordered proteins are potential drug targets. Current Opinion in Chemical Biology. 14: 481-8
Hammoudeh DI, Follis AV, Prochownik EV, et al. (2009) Multiple independent binding sites for small-molecule inhibitors on the oncoprotein c-Myc. Journal of the American Chemical Society. 131: 7390-401
Mustata G, Follis AV, Hammoudeh DI, et al. (2009) Discovery of novel Myc-Max heterodimer disruptors with a three-dimensional pharmacophore model. Journal of Medicinal Chemistry. 52: 1247-50
Follis AV, Hammoudeh DI, Daab AT, et al. (2009) Small-molecule perturbation of competing interactions between c-Myc and Max. Bioorganic & Medicinal Chemistry Letters. 19: 807-10
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