Literature DB >> 24992706

Structures of kibdelomycin bound to Staphylococcus aureus GyrB and ParE showed a novel U-shaped binding mode.

Jun Lu1, Sangita Patel, Nandini Sharma, Stephen M Soisson, Ryuta Kishii, Masaya Takei, Yasumichi Fukuda, Kevin J Lumb, Sheo B Singh.   

Abstract

Bacterial resistance to antibiotics continues to pose serious challenges as the discovery rate for new antibiotics fades. Kibdelomycin is one of the rare, novel, natural product antibiotics discovered recently that inhibits the bacterial DNA synthesis enzymes gyrase and topoisomerase IV. It is a broad-spectrum, Gram-positive antibiotic without cross-resistance to known gyrase inhibitors, including clinically effective quinolones. To understand its mechanism of action, binding mode, and lack of cross-resistance, we have co-crystallized kibdelomycin and novobiocin with the N-terminal domains of Staphylococcus aureus gyrase B (24 kDa) and topo IV (ParE, 24 and 43 kDa). Kibdelomycin shows a unique "dual-arm", U-shaped binding mode in both crystal structures. The pyrrolamide moiety in the lower part of kibdelomycin penetrates deeply into the ATP-binding site pocket, whereas the isopropyl-tetramic acid and sugar moiety of the upper part thoroughly engage in polar interactions with a surface patch of the protein. The isoproramic acid (1,3-dioxopyrrolidine) and a tetrahydropyran acetate group (Sugar A) make polar contact with a surface area consisting of helix α4 and the flexible loop connecting helices α3 and α4. The two arms are connected together by a rigid decalin linker that makes van del Waals contacts with the protein backbone. This "dual-arm", U-shaped, multicontact binding mode of kibdelomycin is unique and distinctively different from binding modes of other known gyrase inhibitors (e.g., coumarins and quinolones), which explains its lack of cross-resistance and low frequency of resistance. The crystal structures reported in this paper should enable design and discovery of analogues with better properties and antibacterial spectrum.

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Year:  2014        PMID: 24992706     DOI: 10.1021/cb5001197

Source DB:  PubMed          Journal:  ACS Chem Biol        ISSN: 1554-8929            Impact factor:   5.100


  20 in total

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Authors:  Sheo B Singh; Priya Dayananth; Carl J Balibar; Charles G Garlisi; Jun Lu; Ryuta Kishii; Masaya Takei; Yasumichi Fukuda; Sookhee Ha; Katherine Young
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Journal:  Adv Sci (Weinh)       Date:  2019-12-05       Impact factor: 16.806

Review 4.  Topoisomerases as anticancer targets.

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Review 6.  Recent Applications of the Multicomponent Synthesis for Bioactive Pyrazole Derivatives.

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Journal:  Molecules       Date:  2022-07-23       Impact factor: 4.927

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Journal:  J Antimicrob Chemother       Date:  2015-08-18       Impact factor: 5.790

9.  Evaluation of A-azepano-triterpenoids and related derivatives as antimicrobial and antiviral agents.

Authors:  Oxana Kazakova; Elena Tret'yakova; Dmitry Baev
Journal:  J Antibiot (Tokyo)       Date:  2021-07-12       Impact factor: 2.649

10.  Design, synthesis and microbiological evaluation of ampicillin-tetramic acid hybrid antibiotics.

Authors:  Philip T Cherian; Aditi Deshpande; Martin N Cheramie; David F Bruhn; Julian G Hurdle; Richard E Lee
Journal:  J Antibiot (Tokyo)       Date:  2016-05-18       Impact factor: 2.649

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