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PUBMED FOR HANDHELDS

Journal Abstract Search


159 related items for PubMed ID: 16270993

  • 1. Tris(thioimidazolyl)borate-zinc-thiolate complexes for the modeling of biological thiolate alkylations.
    Ibrahim MM, Seebacher J, Steinfeld G, Vahrenkamp H.
    Inorg Chem; 2005 Nov 14; 44(23):8531-8. PubMed ID: 16270993
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  • 4. Zn-OH2 and Zn-OH complexes with hydroborate-derived tripod ligands: a comprehensive study.
    Ibrahim MM, Olmo CP, Tekeste T, Seebacher J, He G, Maldonado Calvo JA, Böhmerle K, Steinfeld G, Brombacher H, Vahrenkamp H.
    Inorg Chem; 2006 Sep 04; 45(18):7493-502. PubMed ID: 16933954
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  • 6. Functional modeling of cobalamine-independent methionine synthase with pyrazolylborate-zinc-thiolate complexes.
    Brand U, Rombach M, Seebacher J, Vahrenkamp H.
    Inorg Chem; 2001 Nov 19; 40(24):6151-7. PubMed ID: 11703113
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  • 7. Thiolate bridging and metal exchange in adducts of a zinc finger model and Pt(II) complexes: biomimetic studies of protein/Pt/DNA interactions.
    Almaraz E, de Paula QA, Liu Q, Reibenspies JH, Darensbourg MY, Farrell NP.
    J Am Chem Soc; 2008 May 14; 130(19):6272-80. PubMed ID: 18422317
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  • 8. The alkylation mechanism of zinc-bound thiolates depends upon the zinc ligands.
    Picot D, Ohanessian G, Frison G.
    Inorg Chem; 2008 Sep 15; 47(18):8167-78. PubMed ID: 18712862
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  • 12. Cys(x)His(y)-Zn2+ interactions: thiol vs. thiolate coordination.
    Simonson T, Calimet N.
    Proteins; 2002 Oct 01; 49(1):37-48. PubMed ID: 12211014
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  • 14. Phosphate triester hydrolysis promoted by an N2S(thiolate)Zn complex: mechanistic implications for the metal-dependent reactivity of peptide deformylase.
    Goldberg DP, diTargiani RC, Namuswe F, Minnihan EC, Chang S, Zakharov LN, Rheingold AL.
    Inorg Chem; 2005 Oct 17; 44(21):7559-69. PubMed ID: 16212382
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  • 15. Arylthiolate coordination and reactivity at pseudotetrahedral nickel(II) centers: modulation by noncovalent interactions.
    Chattopadhyay S, Deb T, Ma H, Petersen JL, Young VG, Jensen MP.
    Inorg Chem; 2008 Apr 21; 47(8):3384-92. PubMed ID: 18345601
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  • 16. Development of five-coordinate zinc mono- and dithiolates as S-donor metalloligands: formation of a Zn-W coordination polymer.
    Almaraz E, Foley WS, Denny JA, Reibenspies JH, Golden ML, Darensbourg MY.
    Inorg Chem; 2009 Jun 15; 48(12):5288-95. PubMed ID: 19413331
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  • 17. Mononitrosyl tris(thiolate) iron complex [Fe(NO)(SPh)3]- and dinitrosyl iron complex [(EtS)2Fe(NO)2]-: formation pathway of dinitrosyl iron complexes (DNICs) from nitrosylation of biomimetic rubredoxin [Fe(SR)4]2-/1- (R = Ph, Et).
    Lu TT, Chiou SJ, Chen CY, Liaw WF.
    Inorg Chem; 2006 Oct 16; 45(21):8799-806. PubMed ID: 17029392
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  • 18. H-bonding interactions and control of thiolate nucleophilicity and specificity in model complexes of zinc metalloproteins.
    Smith JN, Hoffman JT, Shirin Z, Carrano CJ.
    Inorg Chem; 2005 Mar 21; 44(6):2012-7. PubMed ID: 15762728
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  • 19. Modeling zinc enzyme inhibition with functional thiolate ligands.
    Tekeste T, Vahrenkamp H.
    Inorg Chem; 2006 Dec 25; 45(26):10799-806. PubMed ID: 17173439
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  • 20. Thiolate-bridged heterodinuclear platinum-zinc chelates as models for ternary platinum-DNA-protein complexes and zinc ejection from zinc fingers. Evidence from studies using ESI-mass spectrometry.
    Liu Q, Golden M, Darensbourg MY, Farrell N.
    Chem Commun (Camb); 2005 Sep 14; (34):4360-2. PubMed ID: 16113748
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