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Journal Abstract Search


201 related items for PubMed ID: 12515831

  • 1. Protein engineering of the tissue inhibitor of metalloproteinase 1 (TIMP-1) inhibitory domain. In search of selective matrix metalloproteinase inhibitors.
    Wei S, Chen Y, Chung L, Nagase H, Brew K.
    J Biol Chem; 2003 Mar 14; 278(11):9831-4. PubMed ID: 12515831
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  • 2. Threonine 98, the pivotal residue of tissue inhibitor of metalloproteinases (TIMP)-1 in metalloproteinase recognition.
    Lee MH, Rapti M, Knaüper V, Murphy G.
    J Biol Chem; 2004 Apr 23; 279(17):17562-9. PubMed ID: 14734567
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  • 3. Constraining specificity in the N-domain of tissue inhibitor of metalloproteinases-1; gelatinase-selective inhibitors.
    Hamze AB, Wei S, Bahudhanapati H, Kota S, Acharya KR, Brew K.
    Protein Sci; 2007 Sep 23; 16(9):1905-13. PubMed ID: 17660250
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  • 4. Directed evolution of the metalloproteinase inhibitor TIMP-1 reveals that its N- and C-terminal domains cooperate in matrix metalloproteinase recognition.
    Raeeszadeh-Sarmazdeh M, Greene KA, Sankaran B, Downey GP, Radisky DC, Radisky ES.
    J Biol Chem; 2019 Jun 14; 294(24):9476-9488. PubMed ID: 31040180
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  • 5. Matrix metalloproteinase-10 (MMP-10) interaction with tissue inhibitors of metalloproteinases TIMP-1 and TIMP-2: binding studies and crystal structure.
    Batra J, Robinson J, Soares AS, Fields AP, Radisky DC, Radisky ES.
    J Biol Chem; 2012 May 04; 287(19):15935-46. PubMed ID: 22427646
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  • 6. Unveiling the surface epitopes that render tissue inhibitor of metalloproteinase-1 inactive against membrane type 1-matrix metalloproteinase.
    Lee MH, Rapti M, Murphy G.
    J Biol Chem; 2003 Oct 10; 278(41):40224-30. PubMed ID: 12869573
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  • 7. Thermodynamic Basis of Selectivity in the Interactions of Tissue Inhibitors of Metalloproteinases N-domains with Matrix Metalloproteinases-1, -3, and -14.
    Zou H, Wu Y, Brew K.
    J Biol Chem; 2016 May 20; 291(21):11348-58. PubMed ID: 27033700
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  • 8. Residue 2 of TIMP-1 is a major determinant of affinity and specificity for matrix metalloproteinases but effects of substitutions do not correlate with those of the corresponding P1' residue of substrate.
    Meng Q, Malinovskii V, Huang W, Hu Y, Chung L, Nagase H, Bode W, Maskos K, Brew K.
    J Biol Chem; 1999 Apr 09; 274(15):10184-9. PubMed ID: 10187802
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  • 9. Mutational study of the amino-terminal domain of human tissue inhibitor of metalloproteinases 1 (TIMP-1) locates an inhibitory region for matrix metalloproteinases.
    Huang W, Meng Q, Suzuki K, Nagase H, Brew K.
    J Biol Chem; 1997 Aug 29; 272(35):22086-91. PubMed ID: 9268350
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  • 12. Engineering of tissue inhibitor of metalloproteinases TIMP-1 for fine discrimination between closely related stromelysins MMP-3 and MMP-10.
    Raeeszadeh-Sarmazdeh M, Coban M, Mahajan S, Hockla A, Sankaran B, Downey GP, Radisky DC, Radisky ES.
    J Biol Chem; 2022 Mar 29; 298(3):101654. PubMed ID: 35101440
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  • 15. E. coli expression of TIMP-4 and comparative kinetic studies with TIMP-1 and TIMP-2: insights into the interactions of TIMPs and matrix metalloproteinase 2 (gelatinase A).
    Troeberg L, Tanaka M, Wait R, Shi YE, Brew K, Nagase H.
    Biochemistry; 2002 Dec 17; 41(50):15025-35. PubMed ID: 12475252
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  • 16. Increased acinar damage of salivary glands of patients with Sjögren's syndrome is paralleled by simultaneous imbalance of matrix metalloproteinase 3/tissue inhibitor of metalloproteinases 1 and matrix metalloproteinase 9/tissue inhibitor of metalloproteinases 1 ratios.
    Pérez P, Kwon YJ, Alliende C, Leyton L, Aguilera S, Molina C, Labra C, Julio M, Leyton C, González MJ.
    Arthritis Rheum; 2005 Sep 17; 52(9):2751-60. PubMed ID: 16142742
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  • 19. Matrix metalloproteinase-10/TIMP-2 structure and analyses define conserved core interactions and diverse exosite interactions in MMP/TIMP complexes.
    Batra J, Soares AS, Mehner C, Radisky ES.
    PLoS One; 2013 Sep 17; 8(9):e75836. PubMed ID: 24073280
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