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PUBMED FOR HANDHELDS

Journal Abstract Search


222 related items for PubMed ID: 33450247

  • 1. ClpXP-mediated Degradation of the TAC Antitoxin is Neutralized by the SecB-like Chaperone in Mycobacterium tuberculosis.
    Texier P, Bordes P, Nagpal J, Sala AJ, Mansour M, Cirinesi AM, Xu X, Dougan DA, Genevaux P.
    J Mol Biol; 2021 Mar 05; 433(5):166815. PubMed ID: 33450247
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  • 3. Genome-wide interaction screen for Mycobacterium tuberculosis ClpCP protease reveals toxin-antitoxin systems as a major substrate class.
    Ziemski M, Leodolter J, Taylor G, Kerschenmeyer A, Weber-Ban E.
    FEBS J; 2021 Jan 05; 288(1):111-126. PubMed ID: 32301575
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  • 4. Structural insights into chaperone addiction of toxin-antitoxin systems.
    Guillet V, Bordes P, Bon C, Marcoux J, Gervais V, Sala AJ, Dos Reis S, Slama N, Mares-Mejía I, Cirinesi AM, Maveyraud L, Genevaux P, Mourey L.
    Nat Commun; 2019 Feb 15; 10(1):782. PubMed ID: 30770830
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  • 5. Degradation of MinD oscillator complexes by Escherichia coli ClpXP.
    LaBreck CJ, Trebino CE, Ferreira CN, Morrison JJ, DiBiasio EC, Conti J, Camberg JL.
    J Biol Chem; 2021 Feb 15; 296():100162. PubMed ID: 33288679
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  • 6. The Mycobacterium tuberculosis ClpP1P2 Protease Interacts Asymmetrically with Its ATPase Partners ClpX and ClpC1.
    Leodolter J, Warweg J, Weber-Ban E.
    PLoS One; 2015 Feb 15; 10(5):e0125345. PubMed ID: 25933022
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  • 8. Mechanism of phage sensing and restriction by toxin-antitoxin-chaperone systems.
    Mets T, Kurata T, Ernits K, Johansson MJO, Craig SZ, Evora GM, Buttress JA, Odai R, Wallant KC, Nakamoto JA, Shyrokova L, Egorov AA, Doering CR, Brodiazhenko T, Laub MT, Tenson T, Strahl H, Martens C, Harms A, Garcia-Pino A, Atkinson GC, Hauryliuk V.
    Cell Host Microbe; 2024 Jul 10; 32(7):1059-1073.e8. PubMed ID: 38821063
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  • 9. Cleavage of the antitoxin of the parD toxin-antitoxin system is determined by the ClpAP protease and is modulated by the relative ratio of the toxin and the antitoxin.
    Diago-Navarro E, Hernández-Arriaga AM, Kubik S, Konieczny I, Díaz-Orejas R.
    Plasmid; 2013 Jul 10; 70(1):78-85. PubMed ID: 23419648
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  • 10. TAC from Mycobacterium tuberculosis: a paradigm for stress-responsive toxin-antitoxin systems controlled by SecB-like chaperones.
    Sala A, Calderon V, Bordes P, Genevaux P.
    Cell Stress Chaperones; 2013 Mar 10; 18(2):129-35. PubMed ID: 23264229
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  • 11. [Addiction of toxin-antitoxin systems to a chaperone in Mycobacterium tuberculosis].
    Bordes P, Genevaux P.
    Med Sci (Paris); 2017 May 10; 33(5):486-488. PubMed ID: 28612721
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  • 15. Substrate recognition and cryo-EM structure of the ribosome-bound TAC toxin of Mycobacterium tuberculosis.
    Mansour M, Giudice E, Xu X, Akarsu H, Bordes P, Guillet V, Bigot DJ, Slama N, D'urso G, Chat S, Redder P, Falquet L, Mourey L, Gillet R, Genevaux P.
    Nat Commun; 2022 May 12; 13(1):2641. PubMed ID: 35552387
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  • 17. Biochemical characterization of mt-PemIK, a novel toxin-antitoxin system in Mycobacterium tuberculosis.
    Chi X, Chang Y, Li M, Lin J, Liu Y, Li C, Tang S, Zhang J.
    FEBS Lett; 2018 Dec 12; 592(24):4039-4050. PubMed ID: 30372528
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  • 18. Multi-Stress Induction of the Mycobacterium tuberculosis MbcTA Bactericidal Toxin-Antitoxin System.
    Ariyachaokun K, Grabowska AD, Gutierrez C, Neyrolles O.
    Toxins (Basel); 2020 May 16; 12(5):. PubMed ID: 32429486
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