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Dive into the research topics where Ramesh Sistla is active.

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Featured researches published by Ramesh Sistla.


Chemical Research in Toxicology | 2014

Electrophilicity of Pyridazine-3-carbonitrile, Pyrimidine-2-carbonitrile, and Pyridine-carbonitrile Derivatives: A Chemical Model To Describe the Formation of Thiazoline Derivatives in Human Liver Microsomes

Sarmistha Sinha; Deepak Ahire; Santosh Wagh; Dibakar Mullick; Ramesh Sistla; Kumaravel Selvakumar; Janet Caceres Cortes; Siva Prasad Putlur; Sandhya Mandlekar; Benjamin M. Johnson

Certain aromatic nitriles are well-known inhibitors of cysteine proteases. The mode of action of these compounds involves the formation of a reversible or irreversible covalent bond between the nitrile and a thiol group in the active site of the enzyme. However, the reactivity of these aromatic nitrile-substituted heterocycles may lead inadvertently to nonspecific interactions with DNA, protein, glutathione, and other endogenous components, resulting in toxicity and complicating the use of these compounds as therapeutic agents. In the present study, the intrinsic reactivity and associated structure-property relationships of cathepsin K inhibitors featuring substituted pyridazines [6-phenylpyridazine-3-carbonitrile, 6-(4-fluorophenyl)pyridazine-3-carbonitrile, 6-(4-methoxyphenyl)pyridazine-3-carbonitrile, 6-p-tolylpyridazine-3-carbonitrile], pyrimidines [5-p-tolylpyrimidine-2-carbonitrile, 5-(4-fluorophenyl)pyrimidine-2-carbonitrile], and pyridines [5-p-tolylpicolinonitrile and 5-(4-fluorophenyl)picolinonitrile] were evaluated using a combination of computational and analytical approaches to establish correlations between electrophilicity and levels of metabolites that were formed in glutathione- and N-acetylcysteine-supplemented human liver microsomes. Metabolites that were characterized in this study featured substituted thiazolines that were formed following rearrangements of transient glutathione and N-acetylcysteine conjugates. Peptidases including γ-glutamyltranspeptidase were shown to catalyze the formation of these products, which were formed to lesser extents in the presence of the selective γ-glutamyltranspeptidase inhibitor acivicin and the nonspecific peptidase inhibitors phenylmethylsulfonyl fluoride and aprotinin. Of the chemical series mentioned above, the pyrimidine series was the most susceptible to metabolism to thiazoline-containing products, followed, in order, by the pyridazine and pyridine series. This trend was in keeping with the diminishing electrophilicity across these series, as demonstrated by in silico modeling. Hence, mechanistic insights gained from this study could be used to assist a medicinal chemistry campaign to design cysteine protease inhibitors that were less prone to the formation of covalent adducts.


Archive | 2013

TRIAZOLYL-SUBSTITUTED PYRIDYL COMPOUNDS USEFUL AS KINASE INHIBITORS

Dharmpal S. Dodd; Christopher P. Mussari; Rajeev S. Bhide; Satheesh Kesavan Nair; Venkatram Reddy Paidi; Sreekantha Ratna Kumar; Abhisek Banerjee; Ramesh Sistla; William J. Pitts; John Hynes


Archive | 2015

Heteroaryl substituted pyridyl compounds useful as kinase modulators

Rajeev S. Bhide; John V. Duncia; John Hynes; Satheesh Kesavan Nair; William J. Pitts; Sreekantha Ratna Kumar; Daniel S. Gardner; Natesan Murugesan; Venkatram Reddy Paidi; Joseph B. Santella; Ramesh Sistla; Hong Wu


Archive | 2013

BICYCLIC HETEROCYCLE SUBSTITUTED PYRIDYL COMPOUNDS USEFUL AS KINASE MODULATORS

Rajeev S. Bhide; John V. Duncia; John Hynes; Satheesh Kesavan Nair; William J. Pitts; Sreekantha Ratna Kumar; Daniel S. Gardner; Natesan Murugesan; Venkatram Reddy Paidi; Joseph B. Santella; Ramesh Sistla; Hong Wu


Archive | 2013

Thiazolyl- or thiadiazolyl-substituted pyridyl compounds useful as kinase inhibitors

Venkatram Reddy Paidi; Sreekantha Ratna Kumar; Satheesh Kesavan Nair; Abhisek Banerjee; Ramesh Sistla; William J. Pitts; John Hynes


Archive | 2013

HETEROCYCLIC-SUBSTITUTED PYRIDYL COMPOUNDS USEFUL AS KINASE INHIBITORS

Venkatram Reddy Paidi; Sreekantha Ratna Kumar; Abhisek Banerjee; Satheesh Kesavan Nair; Ramesh Sistla; William J. Pitts; John Hynes


Archive | 2014

SUBSTITUTED 4,5,6,7-TETRAHYDROPYRAZOLO[1,5-A]PYRAZINE DERIVATIVES AS CASEIN KINASE 1 D/E INHIBITORS

Upender Velaparthi; Chetan Padmakar Darne; Peiying Liu; Mark D. Wittman; Bradley C. Pearce; Erika Araujo; Bireshwar Dasgupta; Jalathi Surendran Nair; Sakthi Kumaran Janakiraman; Chandrasekhar Reddy Rachamreddy; Mettu Mallikarjuna Rao; Arul Mozhi Selvan Subbiah Karuppiah; Bandreddy Subba Reddy; Pulicharla Nagalakshmi; Rajesh Onkardas Bora; Shilpa Holehatti Maheshwarappa; Selvakumar Kumaravel; Dibakar Mullick; Ramesh Sistla


Archive | 2018

[1,2,4]TRIAZOLO[1,5-a]PYRIDINYL SUBSTITUTED INDOLE COMPOUNDS

Alaric J. Dyckman; Dharmpal S. Dodd; Tasir S. Haque; Louis J. Lombardo; John E. Macor; Christopher P. Mussari; Laxman Pasunoori; Sreekantha Ratna Kumar; Trevor C. Sherwood; Shoshana Posy; Ramesh Sistla; Subramaya Hegde; Anupama Ramachandra


Archive | 2017

compostos de piridila substituídos por heteroarila úteis como moduladores de quinase

Daniel S. Gardner; Hong Wu; John Hynes; John V. Duncia; Joseph B. Santella; Natesan Murugesan; Rajeev S. Bhide; Ramesh Sistla; Satheesh Kesavan Nair; Sreekantha Ratna Kumar; Venkatram Reddy Paidi; William J. Pitts


Archive | 2017

COMPUESTOS DE AMINOPIRIDINA SUSTITUIDA CON HETEROARILO

Subba Rao Polimera; Ramesh Sistla; Kandhasamy Sarkunam; Sreekantha Ratna Kumar; Venkatram Reddy Paidi; Satheesh Kesavan Nair; Durgarao Kantheti; Hong Wu; Joseph B. Santella; Natessan Murugesan; John E. Macor; John Hynes; Daniel S. Gardner; John V. Duncia

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John Hynes

University of South Carolina

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Hong Wu

Bristol-Myers Squibb

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