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Physical and Functional Interaction Between Calcineurin and the Cardiac L-Type Ca2+ Channel

  作者 Tandan, S; Wang, Y; Wang, TT; Jiang, N; Hall, DD; Hell, JW; Luo, X; Rothermel, BA; Hill, JA  
  选自 期刊  Circulation Research;  卷期  2009年105-1;  页码  51-U141  
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[摘要]The L-type Ca2+ channel (LTCC) is the major mediator of Ca2+ influx in cardiomyocytes, leading to both mechanical contraction and activation of signaling cascades. Among these Ca2+-activated cascades is calcineurin, a protein phosphatase that promotes hypertrophic growth of the heart. Coimmunoprecipitations from heart extracts and pulldowns using heterologously expressed proteins provided evidence for direct binding of calcineurin at both the N and C termini of alpha(1)1.2. At the C terminus, calcineurin bound specifically at amino acids 1943 to 1971, adjacent to a well-characterized protein kinase (PK) A/PKC/PKG phospho-acceptor site Ser1928. In vitro assays demonstrated that calcineurin can dephosphorylate alpha(1)1.2. Channel function was increased in voltage-clamp recordings of I-Ca,I-L from cultured cardiomyocytes expressing constitutively active calcineurin, consistent with previous observations in cardiac hypertrophy in vivo. Conversely, acute suppression of calcineurin pharmacologically or with specific peptides decreased I-Ca,I-L. These data reveal direct physical interaction between the LTCC and calcineurin in heart. Furthermore, they demonstrate that calcineurin induces robust increases in I-Ca,I-L and highlight calcineurin as a key modulator of pathological electrical remodeling in cardiac hypertrophy. (Circ Res. 2009; 105: 51-60.)

 
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