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Mitogen‐activated protein kinase p38 target regenerating islet‐derived 3γ expression is upregulated in cardiac inflammatory response in the rat heart

机译:大鼠心脏心脏炎症反应中丝裂素活化的蛋白激酶p38靶标再生胰岛衍生的3γ表达上调

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摘要

Regenerating islet‐derived 3γ (Reg3γ) is a multifunctional protein, associated with various tissue injuries and inflammatory states. Since chronic inflammation is characteristics also for heart failure, the aim of this study was to characterize Reg3γ expression in cardiac inflammatory conditions. Reg3γ expression was studied in experimental rat models of myocardial infarction (MI) and pressure overload in vivo. For cell culture studies neonatal rat cardiac myocytes (NRCMs) were used. In addition, adenovirus‐mediated gene transfer of upstream mitogen‐activated protein kinase (MAPK) kinase 3b and p38α MAPK in vivo and in vitro was performed. Reg3γ mRNA (12.8‐fold, P < 0.01) and protein (5.8‐fold, P < 0.001) levels were upregulated during the postinfarction remodeling at day 1 after MI, and angiotensin II (Ang II) markedly increased Reg3γ mRNA levels from 6 h to 2 weeks. Immunohistochemistry revealed that the Ang II‐induced expression of Reg3γ was localized into the cardiac fibroblasts and myofibroblasts of the proliferating connective tissue in the heart. Stretching and treatments with endothelin‐1, lipopolysaccharide (LPS), and fibroblast growth factor‐1 increased Reg3γ mRNA levels in NRCMs. SB203580, a selective p38 MAPK inhibitor, markedly attenuated LPS and mechanical stretch‐induced upregulation of Reg3γ gene expression. Moreover, combined overexpression of MKK3bE and style="fixed-case">WT p38α increased Reg3γ gene expression in cultured cardiomyocytes in vitro and in the rat heart in vivo. Our study shows that cardiac stress activates Reg3γ expression and p38 style="fixed-case">MAPK is an upstream regulator of Reg3γ gene expression in heart. Altogether our data suggest Reg3γ is associated with cardiac inflammatory signaling.
机译:再生胰岛衍生的3γ(Reg3γ)是一种多功能蛋白,与各种组织损伤和炎症状态有关。由于慢性炎症也是心力衰竭的特征,因此本研究的目的是表征心脏炎症条件下Reg3γ的表达。在心肌梗塞(MI)和体内压力超负荷的实验大鼠模型中研究了Reg3γ表达。为了进行细胞培养研究,使用了新生大鼠心脏心肌细胞(NRCM)。此外,还进行了腺病毒介导的体内和体外上游有丝分裂原激活的蛋白激酶(MAPK)激酶3b和p38αMAPK的基因转移。 MI后第1天梗死后重塑期间Reg3γmRNA(12.8倍,P <0.01)和蛋白质(5.8-fold,P <0.001)水平上调,而血管紧张素II(Ang II)从6小时起显着增加Reg3γmRNA水平到2周。免疫组织化学显示,Ang II诱导的Reg3γ表达位于心脏结缔组织增生的心脏成纤维细胞和成肌纤维细胞中。舒张压和内皮素-1,脂多糖(LPS)和成纤维细胞生长因子-1的治疗可增加NRCM中Reg3γmRNA的水平。 SB203580,一种选择性的p38 MAPK抑制剂,可显着减弱LPS和Reg3γ基因表达的机械拉伸诱导上调。此外,MKK3bE和 style =“ fixed-case”> WT p38α的联合过表达增加了体外培养的心肌细胞和体内大鼠心肌中Reg3γ基因的表达。我们的研究表明,心脏应激可激活Reg3γ的表达,而p38 style =“ fixed-case”> MAPK 是心脏中Reg3γ基因表达的上游调节剂。总的来说,我们的数据表明Reg3 γ与心脏炎症信号有关。

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