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Chemistry (Weinheim an Der Bergstrasse, Germany)|September 29, 2011
Investigation of the binding of a carbohydrate-mimetic peptide to its complementary anticarbohydrate antibody by STD-NMR spectroscopy and molecular-dynamics simulationsMonica G Szczepina, Dustin W Bleile, B Mario PintoCarbohydrate Research|December 31, 2003
Synthesis of a novel class of sulfonium ions as potential inhibitors of UDP-galactopyranose mutaseAhmad Ghavami, Joan Jo-wen Chen, B Mario PintoCarbohydrate Research|June 19, 2007
Synthesis of phosphate derivatives related to the glycosidase inhibitor salacinolRamakrishna G Bhat, Nag S Kumar, B Mario PintoBioorganic & Medicinal Chemistry|January 23, 2003
Rational design and synthesis of peptide ligands for an anti-carbohydrate antibody and their immunochemical characterizationMargaret A Johnson, Adewale A Eniade, B Mario PintoPlos One|April 2, 2013
The influence of 150-cavity binders on the dynamics of influenza A neuraminidases as revealed by molecular dynamics simulations and combined clusteringKyle T Greenway, Eric B LeGresley, B Mario PintoThe Journal of Organic Chemistry|October 3, 2012
Probing hyperconjugation experimentally with the conformational deuterium isotope effectKyle T Greenway, Anthony G Bischoff, B Mario PintoProceedings of the National Academy of Sciences of the United States of America|February 19, 2009
Protein stability and resistance to oxidative stress are determinants of longevity in the longest-living rodent, the naked mole-ratViviana I Pérez, Rochelle Buffenstein, Venkata Masamsetti, et al.Biochimica Et Biophysica Acta|August 7, 2015
Age-related changes in the proteostasis network in the brain of the naked mole-rat: Implications promoting healthy longevityJudy C Triplett, Antonella Tramutola, Aaron Swomley, et al.The Journal of Organic Chemistry|December 30, 2006
New chain-extended analogues of salacinol and blintol and their glycosidase inhibitory activities. Mapping the active-site requirements of human maltase glucoamylaseRavindranath Nasi, Lyann Sim, David R Rose, et al.Bioorganic & Medicinal Chemistry Letters|September 20, 2011
Selectivity of 3'-O-methylponkoranol for inhibition of N- and C-terminal maltase glucoamylase and sucrase isomaltase, potential therapeutics for digestive disorders or their sequelaeRazieh Eskandari, Kyra Jones, David R Rose, et al.Pageof 26