• Login
    View Item 
    •   Shocker Open Access Repository Home
    • Fairmount College of Liberal Arts and Sciences
    • Chemistry and Biochemistry
    • CHEM Faculty Scholarship
    • CHEM Faculty Publications
    • View Item
    •   Shocker Open Access Repository Home
    • Fairmount College of Liberal Arts and Sciences
    • Chemistry and Biochemistry
    • CHEM Faculty Scholarship
    • CHEM Faculty Publications
    • View Item
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Structure-guided design of potent and permeable inhibitors of MERS coronavirus 3CL protease that utilize a piperidine moiety as a novel design element

    Date
    2018-04-25
    Author
    Kankanamalage, Anushka C. Galasiti
    Kim, Yunjeong
    Damalanka, Vishnu C.
    Rathnayake, Athri D.
    Fehr, Anthony R.
    Mehzabeen, Nurjahan
    Battaile, Kevin P.
    Lovell, Scott
    Lushington, Gerald H.
    Perlman, Stanley
    Chang, Kyeong-Ok
    Groutas, William C.
    Metadata
    Show full item record
    Citation
    Kankanamalage, Anushka C. Galasiti; Kim, Yunjeong; Damalanka, Vishnu C.; Rathnayake, Athri D.; Fehr, Anthony R.; Mehzabeen, Nurjahan; Battaile, Kevin P.; Lovell, Scott; Lushington, Gerald H.; Perlman, Stanley; Chang, Kyeong-Ok; Groutas, William C. 2018. Structure-guided design of potent and permeable inhibitors of MERS coronavirus 3CL protease that utilize a piperidine moiety as a novel design element. European Journal of Medicinal Chemistry, vol. 150:pp 334-346
    Abstract
    There are currently no approved vaccines or small molecule therapeutics available for the prophylaxis or treatment of Middle East Respiratory Syndrome coronavirus (MERS-CoV) infections. MERS-CoV 3CL protease is essential for viral replication; consequently, it is an attractive target that provides a potentially effective means of developing small molecule therapeutics for combatting MERS-CoV. We describe herein the structure-guided design and evaluation of a novel class of inhibitors of MERS-CoV 3CL protease that embody a piperidine moiety as a design element that is well-suited to exploiting favorable subsite binding interactions to attain optimal pharmacological activity and PK properties. The mechanism of action of the compounds and the structural determinants associated with binding were illuminated using X-ray crystallography.
    Description
    Click on the DOI link to access the article (may not be free).
    URI
    http://dx.doi.org/10.1016/j.ejmech.2018.03.004
    http://hdl.handle.net/10057/15230
    Collections
    • CHEM Faculty Publications

    Browse

    All of Shocker Open Access RepositoryCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsBy TypeThis CollectionBy Issue DateAuthorsTitlesSubjectsBy Type

    My Account

    LoginRegister

    Statistics

    Most Popular ItemsStatistics by CountryMost Popular Authors

    DSpace software copyright © 2002-2023  DuraSpace
    DSpace Express is a service operated by 
    Atmire NV