Vahebi Susan, Kobayashi Tomoyoshi, Warren Chad M, de Tombe Pieter P, Solaro R John
University of Illinois at Chicago Department of Physiology and Biophysics and Center for Cardiovascular Research College of Medicine, Chicago, Ill 60612-7342, USA.
Circ Res. 2005 Apr 15;96(7):740-7. doi: 10.1161/01.RES.0000162457.56568.7d. Epub 2005 Mar 17.
We tested the hypothesis that activation of Rho-A-dependent kinase (ROCK-II) alters cardiac myofilament response to Ca2+ by mechanisms involving phosphorylation of thin filament proteins. We determined effects of a constitutively active form of ROCK-II on ATPase activity and tension development in detergent-extracted (skinned) fiber bundles isolated from mouse left ventricular papillary muscles. ROCK-II induced a depression in maximum ATPase rate and tension, which was associated with phosphorylation of troponin T (TnT), troponin I (TnI), and myosin-binding protein C (C-protein). This effect of ROCK-II was retained in fiber bundles isolated from transgenic (TG) mice in which phosphorylation sites (S14, S15, and S19) of myosin light chain 2 were mutated to alanine. Moreover, exchange of ROCK-II-phosphorylated Tn complex with the native Tn complex in the fiber bundles resulted in inhibition of maximal Ca2+ activation of tension and ATPase activity. Mass spectrometric analysis demonstrated that ROCK-II phosphorylated cardiac TnI (cTnI) at S23, S24, and T144 and cardiac TnT (cTnT) at S278 and T287. An important role for these cTnT sites is indicated by results demonstrating that ROCK-II induced a depression in tension and ATPase activity in skinned fiber bundles from a TG model in which cTnI is replaced by slow skeletal TnI, which lacks S23 and S24 and in which T144 is replaced by proline. Our data provide the first evidence that ROCK-II phosphorylation of the Tn complex, most likely at cTnT, has an important role in functional effects of signaling through the Rho-A pathway.
Rho - A依赖性激酶(ROCK - II)的激活通过涉及细肌丝蛋白磷酸化的机制改变心肌肌丝对Ca2+的反应。我们确定了ROCK - II的组成型活性形式对从小鼠左心室乳头肌分离的经去污剂处理(去垢)的纤维束中ATP酶活性和张力发展的影响。ROCK - II导致最大ATP酶速率和张力降低,这与肌钙蛋白T(TnT)、肌钙蛋白I(TnI)和肌球蛋白结合蛋白C(C蛋白)的磷酸化有关。ROCK - II的这种作用在从转基因(TG)小鼠分离的纤维束中得以保留,在这些小鼠中肌球蛋白轻链2的磷酸化位点(S14、S15和S19)突变为丙氨酸。此外,用纤维束中ROCK - II磷酸化的Tn复合物替换天然Tn复合物会导致张力和ATP酶活性的最大Ca2+激活受到抑制。质谱分析表明,ROCK - II使心脏TnI(cTnI)的S23、S24和T144位点以及心脏TnT(cTnT)的S278和T287位点发生磷酸化。结果表明这些cTnT位点具有重要作用,在一个TG模型的去垢纤维束中,ROCK - II导致张力和ATP酶活性降低,在该模型中cTnI被慢速骨骼肌TnI取代,后者缺乏S23和S24且T144被脯氨酸取代。我们的数据首次证明,Tn复合物的ROCK - II磷酸化,很可能是在cTnT上,在通过Rho - A途径的信号传导功能效应中起重要作用。