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Dive into the research topics where Jeffrey Y. Melamed is active.

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Featured researches published by Jeffrey Y. Melamed.


Proceedings of the National Academy of Sciences of the United States of America | 2002

Diketo acid inhibitor mechanism and HIV-1 integrase: Implications for metal binding in the active site of phosphotransferase enzymes

Jay A. Grobler; Kara A. Stillmock; Binghua Hu; Marc Witmer; Peter J. Felock; Amy S. Espeseth; Abigail Wolfe; Melissa S. Egbertson; Michele Bourgeois; Jeffrey Y. Melamed; John S. Wai; Steve Young; Joseph P. Vacca; Daria J. Hazuda

The process of integrating the reverse-transcribed HIV-1 DNA into the host chromosomal DNA is catalyzed by the virally encoded enzyme integrase (IN). Integration requires two metal-dependent reactions, 3′ end processing and strand transfer. Compounds that contain a diketo acid moiety have been shown to selectively inhibit the strand transfer reaction of IN in vitro and in infected cells and are effective as inhibitors of HIV-1 replication. To characterize the molecular basis of inhibition, we used functional assays and binding assays to evaluate a series of structurally related analogs. These studies focused on investigating the role of the conserved carboxylate and metal binding. We demonstrate that an acidic moiety such as a carboxylate or isosteric heterocycle is not required for binding to the enzyme complex but is essential for inhibition and confers distinct metal-dependent properties on the inhibitor. Binding requires divalent metal and resistance is metal dependent with active site mutants displaying resistance only when the enzymes are evaluated in the context of Mg2+. The mechanism of action of these inhibitors is therefore likely a consequence of the interaction between the acid moiety and metal ion(s) in the IN active site, resulting in a functional sequestration of the critical metal cofactor(s). These studies thus have implications for modeling active site inhibitors of IN, designing and evaluating analogs with improved efficacy, and identifying inhibitors of other metal-dependent phosphotransferases.


Bioorganic & Medicinal Chemistry Letters | 2008

Synthesis of 5-(1-H or 1-alkyl-5-oxopyrrolidin-3-yl)-8-hydroxy-[1,6]-naphthyridine-7-carboxamide inhibitors of HIV-1 integrase

Jeffrey Y. Melamed; Melissa S. Egbertson; Sandor L. Varga; Joseph P. Vacca; Greg Moyer; Lori Gabryelski; Peter J. Felock; Kara A. Stillmock; Marc Witmer; William A. Schleif; Daria J. Hazuda; Yvonne M. Leonard; Lixia Jin; Joan D. Ellis; Steven D. Young

HIV-1 integrase catalyzes the insertion of viral DNA into the genome of the host cell. Integrase inhibitor N-(4-fluorobenzyl)-8-hydroxy-1,6-naphthyridine-7-carboxamide selectively inhibits the strand transfer process of integration. 4-Substituted pyrrolidinones possessing various groups on the pyrrolidinone nitrogen were introduced at the 5-position of the naphthyridine scaffold. These analogs exhibit excellent activity against viral replication in a cell-based assay. The preparation of these compounds was enabled by a three-step, two-pot reaction sequence from a common butenolide intermediate.


Bioorganic & Medicinal Chemistry Letters | 2010

Synthesis and evaluation of a new series of Neuropeptide S receptor antagonists

Jeffrey Y. Melamed; Amy E. Zartman; Nathan R. Kett; Anthony L. Gotter; Victor N. Uebele; Duane R. Reiss; Cindra Condra; Christine Fandozzi; Laura S. Lubbers; Blake A. Rowe; Georgia B. McGaughey; Martin Henault; Rino Stocco; John J. Renger; George D. Hartman; Mark T. Bilodeau; B. Wesley Trotter

Administration of Neuropeptide S (NPS) has been shown to produce arousal, that is, independent of novelty and to induce wakefulness by suppressing all stages of sleep, as demonstrated by EEG recordings in rat. Medicinal chemistry efforts have identified a quinolinone class of potent NPSR antagonists that readily cross the blood-brain barrier. We detail here optimization efforts resulting in the identification of a potent NPSR antagonist which dose-dependently and specifically inhibited (125)I-NPS binding in the CNS when administered to rats.


ACS Medicinal Chemistry Letters | 2015

Synthesis and Evaluation of Heterocyclic Catechol Mimics as Inhibitors of Catechol-O-methyltransferase (COMT).

Scott T. Harrison; Michael S. Poslusney; James Mulhearn; Zhijian Zhao; Nathan R. Kett; Jeffrey W. Schubert; Jeffrey Y. Melamed; Timothy J. Allison; Sangita B. Patel; John M. Sanders; Sujata Sharma; Robert F. Smith; Dawn L. Hall; Ronald G. Robinson; Nancy Sachs; Pete H. Hutson; Scott E. Wolkenberg; James C. Barrow

3-Hydroxy-4-pyridinones and 5-hydroxy-4-pyrimidinones were identified as inhibitors of catechol-O-methyltransferase (COMT) in a high-throughput screen. These heterocyclic catechol mimics exhibit potent inhibition of the enzyme and an improved toxicity profile versus the marketed nitrocatechol inhibitors tolcapone and entacapone. Optimization of the series was aided by X-ray cocrystal structures of the novel inhibitors in complex with COMT and cofactors SAM and Mg(2+). The crystal structures suggest a mechanism of inhibition for these heterocyclic inhibitors distinct from previously disclosed COMT inhibitors.


Proceedings of the National Academy of Sciences of the United States of America | 2000

HIV-1 integrase inhibitors that compete with the target DNA substrate define a unique strand transfer conformation for integrase

Amy S. Espeseth; Peter J. Felock; Abigail Wolfe; Marc Witmer; Jay A. Grobler; Neville J. Anthony; Melissa S. Egbertson; Jeffrey Y. Melamed; Steve Young; Terence G. Hamill; James L. Cole; Daria J. Hazuda


Journal of Medicinal Chemistry | 2000

4-Aryl-2,4-dioxobutanoic acid inhibitors of HIV-1 integrase and viral replication in cells.

John S. Wai; Melissa S. Egbertson; Linda S. Payne; Thorsten E. Fisher; Mark W. Embrey; Lekhanh O. Tran; Jeffrey Y. Melamed; H. Marie Langford; James P. Guare; Linghang Zhuang; Vanessa E. Grey; Joseph P. Vacca; M. Katharine Holloway; Adel M. Naylor-Olsen; Daria J. Hazuda; Peter J. Felock; Abigail Wolfe; Kara A. Stillmock; William A. Schleif; and Lori J. Gabryelski; Steven D. Young


Archive | 2000

1-(aromatic- or heteroaromatic-substituted)-3-(heteroaromatic substituted)-1,3-propanediones and uses thereof

Linda S. Payne; Lekhanh O. Tran; Linghang H. Zhuang; Steven D. Young; Melissa S. Egbertson; John S. Wai; Mark W. Embrey; Thorsten E. Fisher; James P. Guare; H. Marie Langford; Jeffrey Y. Melamed; David Clark


Bioorganic & Medicinal Chemistry Letters | 2007

A potent and orally active HIV-1 integrase inhibitor.

Melissa S. Egbertson; H. Marie Moritz; Jeffrey Y. Melamed; Wei Han; Debra S. Perlow; Michelle S. Kuo; Mark W. Embrey; Joseph P. Vacca; Matthew M. Zrada; Amanda R. Cortes; Audrey A. Wallace; Yvonne M. Leonard; Daria J. Hazuda; Michael D. Miller; Peter J. Felock; Kara A. Stillmock; Marc Witmer; William A. Schleif; Lori J. Gabryelski; Gregory Moyer; Joan D. Ellis; Lixia Jin; Wei Xu; Matthew P. Braun; Kellem Kassahun; Nancy N. Tsou; Steven D. Young


Archive | 2007

Imidazopyridine analogs as cb2 receptor modulators, useful in the treatment of pain, respiratory and non-respiratory diseases

Mark T. Bilodeau; Christopher S. Burgey; Zhengwu James Deng; John C. Hartnett; Nathan R. Kett; Jeffrey Y. Melamed; Peter M. Munson; Kausik K. Nanda; Wayne J. Thompson; B. Wesley Trotter; Zhicai Wu


Archive | 2003

N-(substituted benzyl)-8-hydroxy-1,6-naphthyridine-7- carboxamides useful as hiv integrase inhibitors

Melissa S. Egbertson; H. Marie Langford; Jeffrey Y. Melamed; John S. Wai; Wei Han; Debbie S. Perlow; Linghang Zhuang; Mark W. Embrey; Steven D. Young

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Steven D. Young

United States Military Academy

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H. Marie Langford

United States Military Academy

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John S. Wai

United States Military Academy

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Mark W. Embrey

United States Military Academy

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Linghang Zhuang

United States Military Academy

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James P. Guare

United States Military Academy

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Thorsten E. Fisher

United States Military Academy

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