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Kim, Seokwon; Kubec, Roman; Musah, Rabi A. Antibacterial
and Antifungal Activity of Sulfur-containing Compounds from
Petiveria alliacea L. J. Ethnopharmacology
(2006), 104, 188-192. (pdf)
Kubec, Roman; Musah, Rabi A. g-Glutamyl Dipeptides
in Petiveria alliacea. Phytochemistry, (2005), 66,
2494-2497). (pdf)
Musah, Rabi A.; Kim, Seokwon, Kubec; Roman. Antibacterial
and Antifungal Activity of Sulfur-Containing Compounds from
Petiveria Alliacea L. Phosphorus, Sulfur and Silicon
and Related Elements, (2005), 180, 1455-1456.
Musah, Rabi. A. The HIV-1 Nucleocapsid Zinc Finger
Protein as a Target of Antiretroviral Therapy. Curr.
Top. Med. Chem., (2004), 4, 1605-22. (pdf)
Kubec, Roman; Hrbacova, Marcela; Musah, Rabi
A.; Velisek, Jan. Allium Discoloration: Precursors Involved
in Onion Pinking and Garlic Greening. J. Agric. Food
Chem., (2004), 52, 5089-5094. (pdf)
Rosenfeld, Robin; Goodsell, David; Musah,
Rabi A.; Morris, Garrett M.; Goodin, David B.; Olson, Arthur
J. Automated Docking of Ligands to an Artificial Active
Site: Augmenting Crystallographic Analysis with Computer Modeling.
J. Comp. Aided Mol. Des., (2003), 17, 525-536. (pdf)
Kubec, R.; Kim, S.; Musah, Rabi. A. The
Lachrymatory Principle of Petiveria Alliacea. Phytochemistry,
(2003), 63, 37-40. (pdf)
Kubec, Roman; Velisek, Jan; Musah, Rabi A.
The Amino Acid Precursors and Odor Formation in Society
Garlic (Tulbaghia violacea Harv.). Phytochemistry (2002),
60, 21-25. (pdf)
Kubec, R.; Kim, S.; McKeon, D. M.; Musah,
Rabi. A. Isolation of S-butylcysteine Sulfoxide and Six
Butyl-containing Thiosulfinates from Allium siculum.
J. Nat. Prod., (2002), 65, 960-964. (pdf)
Kubec, R.; Kim, S.; Musah, R. A. S-Substituted
Cysteine Derivatives and Thiosulfinate Formation in Petiveria
alliacea - part II. Phytochemistry, (2002), 60, 675-680.
(pdf)
Sandoval, M.; Okuhama, N. N.; Zhang, X. J.;
Condezo, L. A;. Lao, J.; Angeles, F. M.; Musah, R.abi A.;
Bobrowski, P.; Miller, M. J. S. Anti-inflammatory and
Antioxidant Activities of Cat's Claw (Uncaria tomentosa and
Uncaria guianensis) are Independent of Their Alkaloid Content.
Phytomedicine (2002), 9, 325-37. (pdf)
Rosenfeld, Robin J.; Hays, Anna-Maria A.;
Musah, Rabi A.; Goodin, David B. Excision of a Proposed
Electron Transfer Pathway in Cytochrome c Peroxidase and its
Replacement by a Ligand-Binding Channel. Protein Sci.
(2002), 11, 1251-1259. (pdf)
Musah, Rabi A.; Jensen, Gerard M.; Bunte,
Steven W.; Rosenfeld, Robin J.; Goodin, David B.; Artificial
Protein Cavities as Specific Ligand-binding Templates: Characterization
of an Engineered Heterocyclic Cation-binding Site that Preserves
the Evolved Specificity of the Parent Protein. J. Mol.
Bio., (2002), 315, 845-857. (pdf)
Kubec, Roman; Musah, Rabi A. Cysteine
Sulfoxide Derivatives in Petiveria alliacea. Phytochemistry
(2001), 58, 981-985. (pdf)
Miller, Mark J. S.; Vergnolle, Nathalie;
McKnight, Webb; Musah, Rabi A.; Davison, Cathy A.; Trentacosti,
Ann Marie; Thompson, Jane H.; Sandoval, Manuel; Wallace, John
L. Inhibition of Neurogenic Inflammation by the Amazonian
Herbal Medicine Sangre de Grado. J. Invest. Derm. (2001),
117, 725-730. (pdf)
Jourd'heuil, David; Jourd'heuil, Frances
L.; Kutchukian, Peter S.; Musah, Rabi A.; Wink, David A.;
Grisham, Matthew B. Reaction of Superoxide and Nitric
Oxide with Peroxynitrite. Implications for Peroxynitrite-mediated
Oxidation Reactions In Vivo. J. Biol. Chem. (2001), 276,
28799-28805. (pdf)
Cao, Y., Musah, R. A., Wilcox, S. K., Goodin,
D. B., McRee, D. E. Protein Conformer Selection by Ligand
Binding Observed with Crystallography. Prot. Sci., (1998),
7, 72. (pdf)
Musah, R. A. Jensen, G. M., Rosenfeld, R.
J., Bunte, S. W., McRee, D. E., Goodin, G., M. Variation
in the Strength of a CH to O Hydrogen Bond in an Artificial
Cavity. J. Am. Chem. Soc. (1997), 119, 9083. (pdf)
Musah, R. A., Goodin, D. B., Introduction
of Novel Substrate Oxidation into a Heme Peroxidase by Cavity
Complementation: Oxidation of 2-Aminothiazole and Covalent
Modification of the Enzyme. Biochemistry, (1997) 36,
11665. (pdf)
Fitzgerald, M. M., Musah, R. A., McRee, D.
E., Goodin, D. B. A Ligand-gated, Hinged Loop Rearrangement
Opens a Channel to a Buried Artificial Protein Cavity.
Nat. Struct. Bio., (1996), 3, 626. (pdf)
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