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通过具有组成型活性蛋白激酶A磷酸化位点的肌钙蛋白I在体内进行频率和后负荷依赖性心脏调节。

Frequency- and afterload-dependent cardiac modulation in vivo by troponin I with constitutively active protein kinase A phosphorylation sites.

作者信息

Takimoto Eiki, Soergel David G, Janssen Paul M L, Stull Linda B, Kass David A, Murphy Anne M

机构信息

Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Md 21205, USA.

出版信息

Circ Res. 2004 Mar 5;94(4):496-504. doi: 10.1161/01.RES.0000117307.57798.F5. Epub 2004 Jan 15.

Abstract

Acute beta-adrenergic stimulation enhances cardiac contractility, accelerates muscle relaxation, and amplifies the inotropic and lusitropic response to increased stimulation frequency. These effects are modulated by phosphorylation of calcium handling and myofilament proteins such as troponin I (TnI) by protein kinase A (PKA). To more directly delineate the role of TnI PKA phosphorylation, transgenic mice were generated that overexpress cardiac TnI in which the serine residues normally targeted by PKA are mutated to aspartic acid to mimic constitutive phosphorylation (TnIDD22,23). Native cardiac TnI was near completely replaced in one transgenic line as assessed by in vitro phosphorylation, and this led to reduced calcium sensitivity of myofibrillar MgATPase, as expected. TnIDD22,23 mice had mildly enhanced basal systolic and diastolic function, and displayed marked augmentation of frequency-dependent inotropy and relaxation, with a peak frequency response 2-fold greater in mutants than controls (P<0.005). Increasing afterload prolonged relaxation more in nontransgenic than TnIDD22,23 (P<0.02), whereas contractile responses to afterload were similar between these strains. Isoproterenol treatment eliminated the differential force-frequency and afterload response between TnIDD22,23 and controls. In contrast to in vivo studies, isolated isometric trabeculae from nontransgenic and TnIDD22,23 mice had similar basal, isoproterenol-, and frequency-stimulated function, suggesting that muscle shortening may be important to TnI PKA effects. These results support a novel role for cardiac TnI PKA phosphorylation in the rate-dependent enhancement of systolic and diastolic function in vivo and afterload sensitivity of relaxation. These results have implications for cardiac failure in which force-frequency modulation is blunted and afterload relaxation sensitivity increased in association with diminished PKA TnI phosphorylation.

摘要

急性β-肾上腺素能刺激可增强心肌收缩力、加速肌肉松弛,并放大对增加刺激频率的变力性和变时性反应。这些效应由蛋白激酶A(PKA)对钙处理蛋白和肌丝蛋白(如肌钙蛋白I(TnI))的磷酸化作用调节。为了更直接地阐明TnI PKA磷酸化的作用,构建了转基因小鼠,其过度表达心脏TnI,其中通常被PKA靶向的丝氨酸残基突变为天冬氨酸以模拟组成型磷酸化(TnIDD22,23)。通过体外磷酸化评估,在一个转基因品系中天然心脏TnI几乎被完全取代,正如预期的那样,这导致肌原纤维MgATP酶的钙敏感性降低。TnIDD22,23小鼠的基础收缩和舒张功能轻度增强,并表现出频率依赖性变力性和松弛的显著增强,突变体的峰值频率反应比对照大2倍(P<0.005)。增加后负荷时,非转基因小鼠的松弛时间比TnIDD22,23小鼠延长更多(P<0.02),而这些品系之间对后负荷的收缩反应相似。异丙肾上腺素处理消除了TnIDD22,23小鼠和对照之间的力-频率和后负荷反应差异。与体内研究相反,来自非转基因和TnIDD22,23小鼠的离体等长小梁具有相似的基础、异丙肾上腺素和频率刺激功能,这表明肌肉缩短可能对TnI PKA效应很重要。这些结果支持心脏TnI PKA磷酸化在体内收缩和舒张功能的速率依赖性增强以及后负荷松弛敏感性方面具有新作用。这些结果对心力衰竭具有启示意义,在心力衰竭中力-频率调节减弱,后负荷松弛敏感性增加,同时伴有PKA TnI磷酸化减少。

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