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首页> 外文期刊>Peptides: An International Journal >p21(CIP1/WAF1)-dependent inhibition of cardiac hypertrophy in response to Angiotensin II involves Akt/Myc and pRb signaling
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p21(CIP1/WAF1)-dependent inhibition of cardiac hypertrophy in response to Angiotensin II involves Akt/Myc and pRb signaling

机译:响应血管紧张素II的p21(CIP1 / WAF1)依赖性心肌肥大抑制涉及Akt / Myc和pRb信号

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摘要

The cyclin-dependent kinase inhibitor p21(CIP1/WAF1) (p21) is highly expressed in the adult heart. However, in response to stress, its expression is downregulated. Therefore, we investigated the role of p21 in the regulation of cardiac hypertrophic growth. At 2 months of age, p21 knockout mice (p21KO) lack an overt cardiac phenotype. In contrast, by 10 months of age, p21KO developed age-dependent cardiac hypertrophy and heart failure. After 3 weeks of trans-aortic banding (TAB), the heart/body weight ratio in 11 week old p21KO mice increased by 57%, as compared to 42% in wild type mice indicating that p21KO have a higher susceptibility to pressure overload-induced cardiac hypertrophy. We then chronically infused 8 week old wild type mice with Angiotensin II (2.0 mg/kg/min) or saline subcutaneously by osmotic pumps for 14 days. Recombinant TAT conjugated p21 protein variants (10 mg/kg body weight) or saline were intraperitoneally injected once daily for 14 days into Angiotensin II and saline-infused animals. Angiotensin II treated mice developed pathological cardiac hypertrophy with an average increase of 38% in heart/body weight ratios, as compared to saline-treated controls. Reconstitution of p21 function by TAT.p21 protein transduction prevented Angiotensin II-dependent development of cardiac hypertrophy and failure. Taken together, our genetic and biochemical data show an important function of p21 in the regulation of growth-related processes in the heart. (C) 2016 Elsevier Inc. All rights reserved.
机译:细胞周期蛋白依赖性激酶抑制剂p21(CIP1 / WAF1)(p21)在成年心脏中高度表达。但是,响应压力,其表达下调。因此,我们研究了p21在调节心脏肥大性生长中的作用。在2个月大时,p21基因敲除小鼠(p21KO)缺乏明显的心脏表型。相反,到10个月大时,p21KO出现了年龄依赖性心脏肥大和心力衰竭。经过三周的主动脉束缚(TAB)后,11周龄的p21KO小鼠的心/体重比增加了57%,而野生型小鼠为42%,这表明p21KO对压力超负荷诱导的敏感性更高心脏肥大。然后,我们通过渗透泵向8周龄的野生型小鼠皮下长期注入血管紧张素II(2.0 mg / kg / min)或生理盐水,持续14天。将重组TAT缀合的p21蛋白变体(10 mg / kg体重)或盐水每天一次腹膜内注射到血管紧张素II和注入盐水的动物中,持续14天。与盐水处理的对照组相比,血管紧张素II处理的小鼠出现了病理性心脏肥大,心脏/体重比平均增加了38%。 TAT重建p21功能。p21蛋白转导可预防血管紧张素II依赖性的心肌肥大和衰竭。综上所述,我们的遗传和生化数据显示p21在调节心脏生长相关过程中具有重要作用。 (C)2016 Elsevier Inc.保留所有权利。

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