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衰老大鼠心肌梗死后心脏一氧化氮合酶1衍生的一氧化氮上调。

Up-regulation of cardiac nitric oxide synthase 1-derived nitric oxide after myocardial infarction in senescent rats.

作者信息

Damy Thibaud, Ratajczak Philippe, Robidel Estelle, Bendall Jennifer K, Oliviéro Patricia, Boczkowski Jorge, Ebrahimian Talin, Marotte Françoise, Samuel Jane-Lise, Heymes Christophe

机构信息

INSERM 572, Hôpital Lariboisière, IFR J. Marrey Paris-7, Université D. Diderot, Paris, France.

出版信息

FASEB J. 2003 Oct;17(13):1934-6. doi: 10.1096/fj.02-1208fje. Epub 2003 Aug 1.

Abstract

Nitric oxide (NO) has been implicated in the development of heart failure, although the source, significance, and functional role of the different NO synthase (NOS) isoforms in this pathology are controversial. The presence of a neuronal-type NOS isoform (NOS1) in the cardiac sarcoplasmic reticulum has been recently discovered, leading to the hypothesis that NOS1-derived NO may notably alter myocardial inotropy. However, the regulation and role(s) of NOS1 in cardiac diseases remain to be determined. Using an experimental model of myocardial infarction (MI) in senescent rats, we demonstrated a significant increase in cardiac NOS1 expression and activity in MI, coupled with the translocation of this enzyme to the sarcolemma through interactions with caveolin-3. The enhanced NOS1 activity counteracts the decrease in cardiac NOS3 expression and activity observed in heart failure. We demonstrated an increased interaction between NOS1 and its regulatory protein HSP90 in post-MI hearts, a potential mechanism for the higher NOS1 activity in this setting. Finally, preferential in vivo inhibition of NOS1 activity enhanced basal post-MI left ventricular dysfunction in senescent rats. These results provide the first evidence that increased NOS1-derived NO production may play a significant role in the autocrine regulation of myocardial contractility after MI in aging rats.

摘要

一氧化氮(NO)已被认为与心力衰竭的发生有关,尽管不同的一氧化氮合酶(NOS)同工型在这种病理状态下的来源、意义和功能作用存在争议。最近在心肌肌浆网中发现了一种神经元型NOS同工型(NOS1),这引发了一种假说,即NOS1衍生的NO可能会显著改变心肌收缩力。然而,NOS1在心脏疾病中的调节作用和功能仍有待确定。利用衰老大鼠的心肌梗死(MI)实验模型,我们证明了MI时心脏中NOS1的表达和活性显著增加,并且该酶通过与小窝蛋白-3相互作用而转位至肌膜。增强的NOS1活性抵消了在心力衰竭中观察到的心脏NOS3表达和活性的降低。我们证明了MI后心脏中NOS1与其调节蛋白HSP90之间的相互作用增加,这是该情况下NOS1活性较高的潜在机制。最后,体内对NOS1活性的优先抑制增强了衰老大鼠MI后的基础左心室功能障碍。这些结果提供了首个证据,表明衰老大鼠MI后,增加的NOS1衍生的NO生成可能在心肌收缩力的自分泌调节中起重要作用。

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