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2
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本文引用的文献

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Identification of Sin1 as an essential TORC2 component required for complex formation and kinase activity.鉴定Sin1为TORC2复合物形成和激酶活性所必需的关键组分。
Genes Dev. 2006 Oct 15;20(20):2820-32. doi: 10.1101/gad.1461206.
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Overexpression of bone morphogenetic protein 10 in myocardium disrupts cardiac postnatal hypertrophic growth.心肌中骨形态发生蛋白10的过表达会破坏心脏出生后的肥厚性生长。
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Attenuation of cardiac hypertrophy by inhibiting both mTOR and NFkappaB activation in vivo.通过在体内抑制mTOR和NFκB激活来减轻心脏肥大
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mTOR.RICTOR is the Ser473 kinase for Akt/protein kinase B in 3T3-L1 adipocytes.mTOR.RICTOR是3T3-L1脂肪细胞中Akt/蛋白激酶B的Ser473激酶。
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5
Insulin and IGF-I stimulate the formation of the eukaryotic initiation factor 4F complex and protein synthesis in C2C12 myotubes independent of availability of external amino acids.胰岛素和胰岛素样生长因子-I可刺激C2C12肌管中真核生物起始因子4F复合物的形成及蛋白质合成,且与细胞外氨基酸的可用性无关。
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Phosphorylation and regulation of Akt/PKB by the rictor-mTOR complex.rictor-mTOR复合物对Akt/PKB的磷酸化及调控
Science. 2005 Feb 18;307(5712):1098-101. doi: 10.1126/science.1106148.
7
Deletion of ribosomal S6 kinases does not attenuate pathological, physiological, or insulin-like growth factor 1 receptor-phosphoinositide 3-kinase-induced cardiac hypertrophy.核糖体S6激酶的缺失并不会减弱病理性、生理性或胰岛素样生长因子1受体-磷酸肌醇3激酶诱导的心脏肥大。
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Nkx2-5 pathways and congenital heart disease; loss of ventricular myocyte lineage specification leads to progressive cardiomyopathy and complete heart block.Nkx2-5信号通路与先天性心脏病;心室肌细胞谱系特异性丧失导致进行性心肌病和完全性心脏传导阻滞。
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BMP10 is essential for maintaining cardiac growth during murine cardiogenesis.骨形态发生蛋白10(BMP10)对于维持小鼠心脏发育过程中的心脏生长至关重要。
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10
S6K1(-/-)/S6K2(-/-) mice exhibit perinatal lethality and rapamycin-sensitive 5'-terminal oligopyrimidine mRNA translation and reveal a mitogen-activated protein kinase-dependent S6 kinase pathway.S6K1基因敲除/S6K2基因敲除小鼠表现出围产期致死性以及对雷帕霉素敏感的5'-末端寡嘧啶mRNA翻译,并揭示了一条丝裂原活化蛋白激酶依赖性S6激酶途径。
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激酶失活的哺乳动物雷帕霉素靶蛋白(mTOR)突变体在心脏中的特异性过表达会损害mTOR介导的信号传导及心脏功能。

Cardiac restricted overexpression of kinase-dead mammalian target of rapamycin (mTOR) mutant impairs the mTOR-mediated signaling and cardiac function.

作者信息

Shen Wei-Hua, Chen Zhuang, Shi Shu, Chen Hanying, Zhu Wuqiang, Penner Anne, Bu Guixue, Li Wei, Boyle David W, Rubart Michael, Field Loren J, Abraham Robert, Liechty Edward A, Shou Weinian

机构信息

Herman B. Wells Center for Pediatric Research, Division of Pediatric Cardiology and Neonatology, Department of Pediatrics, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.

出版信息

J Biol Chem. 2008 May 16;283(20):13842-9. doi: 10.1074/jbc.M801510200. Epub 2008 Mar 7.

DOI:10.1074/jbc.M801510200
PMID:18326485
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2376248/
Abstract

Mammalian target of rapamycin (mTOR) is a key regulator for cell growth through modulating components of the translation machinery. Previously, numerous pharmacological studies using rapamycin suggested that mTOR has an important role in regulating cardiac hypertrophic growth. To further investigate this assumption, we have generated two lines of cardiac specific mTOR transgenic mice, kinase-dead (kd) mTOR and constitutively active (ca) mTOR, using alpha-myosin heavy chain promoter. alpha-Myosin heavy chain (alphaMHC)-mTORkd mice had a near complete inhibition of p70 S6k and 4E-BP1 phosphorylation, whereas alphaMHC-mTORca had a significant increase in p70 S6k and 4E-BP1 phosphorylation. Although the cardiac function of alphaMHC-mTORkd mice was significantly altered, the cardiac morphology of these transgenic mice was normal. The cardiac hypertrophic growth in response to physiological and pathological stimuli was not different in alphaMHC-mTORkd and alphaMHC-mTORca transgenic mice when compared with that of nontransgenic littermates. These findings suggest that the mTOR-mediated signaling pathway is not essential to cardiac hypertrophic growth but is involved in regulating cardiac function. Additional analysis of cardiac responses to fasting-refeeding or acute insulin administration indicated that alphaMHC-mTORkd mice had a largely impaired physiological response to nutrient energy supply and insulin stimulation.

摘要

雷帕霉素的哺乳动物靶标(mTOR)是通过调节翻译机制的组成部分来调控细胞生长的关键因子。此前,众多使用雷帕霉素的药理学研究表明,mTOR在调节心脏肥大生长中起重要作用。为了进一步探究这一假设,我们利用α-肌球蛋白重链启动子构建了两系心脏特异性mTOR转基因小鼠,即激酶失活(kd)mTOR和组成型激活(ca)mTOR。α-肌球蛋白重链(αMHC)-mTORkd小鼠的p70 S6k和4E-BP1磷酸化几乎完全受到抑制,而αMHC-mTORca小鼠的p70 S6k和4E-BP1磷酸化则显著增加。尽管αMHC-mTORkd小鼠的心脏功能发生了显著改变,但其心脏形态正常。与非转基因同窝小鼠相比,αMHC-mTORkd和αMHC-mTORca转基因小鼠对生理和病理刺激的心脏肥大生长并无差异。这些发现表明,mTOR介导的信号通路对心脏肥大生长并非必不可少,但参与调节心脏功能。对禁食-再进食或急性胰岛素给药的心脏反应的进一步分析表明,αMHC-mTORkd小鼠对营养能量供应和胰岛素刺激的生理反应在很大程度上受损。