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PUBMED FOR HANDHELDS

Journal Abstract Search


187 related items for PubMed ID: 23530122

  • 1. RhoGEF12 controls cardiac remodeling by integrating G protein- and integrin-dependent signaling cascades.
    Takefuji M, Krüger M, Sivaraj KK, Kaibuchi K, Offermanns S, Wettschureck N.
    J Exp Med; 2013 Apr 08; 210(4):665-73. PubMed ID: 23530122
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  • 2. G(13)-mediated signaling pathway is required for pressure overload-induced cardiac remodeling and heart failure.
    Takefuji M, Wirth A, Lukasova M, Takefuji S, Boettger T, Braun T, Althoff T, Offermanns S, Wettschureck N.
    Circulation; 2012 Oct 16; 126(16):1972-82. PubMed ID: 22972902
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  • 3. Detrimental Role of PDZ-RhoGEF in Pathological Cardiac Hypertrophy.
    Huang J, Qu Q, Dai Y, Ren D, Qian J, Ge J.
    Hypertension; 2023 Feb 16; 80(2):403-415. PubMed ID: 36448462
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  • 6. A-kinase anchoring protein Lbc coordinates a p38 activating signaling complex controlling compensatory cardiac hypertrophy.
    Pérez López I, Cariolato L, Maric D, Gillet L, Abriel H, Diviani D.
    Mol Cell Biol; 2013 Aug 16; 33(15):2903-17. PubMed ID: 23716597
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  • 7. TEAD-1 overexpression in the mouse heart promotes an age-dependent heart dysfunction.
    Tsika RW, Ma L, Kehat I, Schramm C, Simmer G, Morgan B, Fine DM, Hanft LM, McDonald KS, Molkentin JD, Krenz M, Yang S, Ji J.
    J Biol Chem; 2010 Apr 30; 285(18):13721-35. PubMed ID: 20194497
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  • 9. The alteration of protein prenylation induces cardiomyocyte hypertrophy through Rheb-mTORC1 signalling and leads to chronic heart failure.
    Xu N, Guan S, Chen Z, Yu Y, Xie J, Pan FY, Zhao NW, Liu L, Yang ZZ, Gao X, Xu B, Li CJ.
    J Pathol; 2015 Apr 30; 235(5):672-85. PubMed ID: 25385233
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  • 14. The extracellular matrix proteoglycan fibromodulin is upregulated in clinical and experimental heart failure and affects cardiac remodeling.
    Andenæs K, Lunde IG, Mohammadzadeh N, Dahl CP, Aronsen JM, Strand ME, Palmero S, Sjaastad I, Christensen G, Engebretsen KVT, Tønnessen T.
    PLoS One; 2018 Apr 30; 13(7):e0201422. PubMed ID: 30052659
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  • 15. Talin1 has unique expression versus talin 2 in the heart and modifies the hypertrophic response to pressure overload.
    Manso AM, Li R, Monkley SJ, Cruz NM, Ong S, Lao DH, Koshman YE, Gu Y, Peterson KL, Chen J, Abel ED, Samarel AM, Critchley DR, Ross RS.
    J Biol Chem; 2013 Feb 08; 288(6):4252-64. PubMed ID: 23266827
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  • 17. Caspase recruitment domain 6 protects against cardiac hypertrophy in response to pressure overload.
    Li L, Chen W, Zhu Y, Wang X, Jiang DS, Huang F, Wang L, Xiang F, Qin W, Wang Q, Zhang R, Zhu X, Li H, Chen X.
    Hypertension; 2014 Jul 08; 64(1):94-102. PubMed ID: 24777975
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  • 18. Receptor-dependent RhoA activation in G12/G13-deficient cells: genetic evidence for an involvement of Gq/G11.
    Vogt S, Grosse R, Schultz G, Offermanns S.
    J Biol Chem; 2003 Aug 01; 278(31):28743-9. PubMed ID: 12771155
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  • 19. The chromatin-binding protein Smyd1 restricts adult mammalian heart growth.
    Franklin S, Kimball T, Rasmussen TL, Rosa-Garrido M, Chen H, Tran T, Miller MR, Gray R, Jiang S, Ren S, Wang Y, Tucker HO, Vondriska TM.
    Am J Physiol Heart Circ Physiol; 2016 Nov 01; 311(5):H1234-H1247. PubMed ID: 27663768
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  • 20. Mice lacking functional TRPV1 are protected from pressure overload cardiac hypertrophy.
    Buckley CL, Stokes AJ.
    Channels (Austin); 2011 Nov 01; 5(4):367-74. PubMed ID: 21814047
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