收缩活性通过fak依赖性信号通路调节心肌细胞诱导型一氧化氮合酶表达和NO(i)产生

Journal of signal transduction Pub Date : 2012-01-01 Epub Date: 2012-07-26 DOI:10.1155/2012/473410
Miensheng Chu, Yevgeniya Koshman, Rekha Iyengar, Taehoon Kim, Brenda Russell, Allen M Samarel
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引用次数: 6

摘要

细胞内一氧化氮(NO(i))是兴奋-收缩耦合的生理调节剂,但也参与肥厚和心力衰竭期间心功能障碍的发展。为了确定收缩活性是否调节一氧化氮合酶(NOS)表达,自发收缩,用l型钙通道阻滞剂(硝苯地平和维拉帕米)或肌球蛋白II atp酶抑制剂(丁二酮单肟(BDM)和白布司他汀)治疗新生大鼠心室肌细胞(NRVM)产生收缩停止。两种类型的抑制剂均能显著降低iNOS而非eNOS的表达,同时也能降低NO(i)的产生。抑制收缩活性也降低了局灶黏附激酶(FAK)和AKT磷酸化。收缩诱导的iNOS表达需要FAK和磷脂酰肌醇3-激酶(PI(3)K),因为PF573228和LY294002 (10 μM, 24 h)均可消除收缩诱导的iNOS表达。同样,FAK特异性shrna (shFAK)导致FAK敲低,AKT在T308和S473位点磷酸化降低,iNOS表达降低。相比之下,shrna介导的PYK2 (fak蛋白酪氨酸激酶家族的另一成员)的敲低效果要小得多。相反,过表达构成活性形式的FAK (CD2-FAK)或AKT (Myr-AKT)逆转了BDM对iNOS表达和NO(i)产生的抑制作用。因此,NRVM中收缩诱导的iNOS表达和NO(i)的产生是通过FAK-PI(3)K-AKT信号通路介导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Contractile Activity Regulates Inducible Nitric Oxide Synthase Expression and NO(i) Production in Cardiomyocytes via a FAK-Dependent Signaling Pathway.

Contractile Activity Regulates Inducible Nitric Oxide Synthase Expression and NO(i) Production in Cardiomyocytes via a FAK-Dependent Signaling Pathway.

Contractile Activity Regulates Inducible Nitric Oxide Synthase Expression and NO(i) Production in Cardiomyocytes via a FAK-Dependent Signaling Pathway.

Contractile Activity Regulates Inducible Nitric Oxide Synthase Expression and NO(i) Production in Cardiomyocytes via a FAK-Dependent Signaling Pathway.

Intracellular nitric oxide (NO(i)) is a physiological regulator of excitation-contraction coupling, but is also involved in the development of cardiac dysfunction during hypertrophy and heart failure. To determine whether contractile activity regulates nitric oxide synthase (NOS) expression, spontaneously contracting, neonatal rat ventricular myocytes (NRVM) were treat with L-type calcium channel blockers (nifedipine and verapamil) or myosin II ATPase inhibitors (butanedione monoxime (BDM) and blebbistatin) to produce contractile arrest. Both types of inhibitors significantly reduced iNOS but not eNOS expression, and also reduced NO(i) production. Inhibiting contractile activity also reduced focal adhesion kinase (FAK) and AKT phosphorylation. Contraction-induced iNOS expression required FAK and phosphatidylinositol 3-kinase (PI(3)K), as both PF573228 and LY294002 (10 μM, 24 h) eliminated contraction-induced iNOS expression. Similarly, shRNAs specific for FAK (shFAK) caused FAK knockdown, reduced AKT phosphorylation at T308 and S473, and reduced iNOS expression. In contrast, shRNA-mediated knockdown of PYK2, the other member of the FAK-family of protein tyrosine kinases, had much less of an effect. Conversely, overexpression of a constitutively active form of FAK (CD2-FAK) or AKT (Myr-AKT) reversed the inhibitory effect of BDM on iNOS expression and NO(i) production. Thus, contraction-induced iNOS expression and NO(i) production in NRVM are mediated via a FAK-PI(3)K-AKT signaling pathway.

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