首页> 外文期刊>Journal of Cachexia, Sarcopenia and Muscle >p300 and cAMP response element‐binding protein‐binding protein in skeletal muscle homeostasis, contractile function, and survival
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p300 and cAMP response element‐binding protein‐binding protein in skeletal muscle homeostasis, contractile function, and survival

机译:P300和CAMP反应元素结合蛋白结合蛋白在骨骼肌稳态,收缩功能和生存中

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Background Reversible ε‐amino acetylation of lysine residues regulates transcription as well as metabolic flux; however, roles for specific lysine acetyltransferases in skeletal muscle physiology and function are unknown. In this study, we investigated the role of the related acetyltransferases p300 and cAMP response element‐binding protein‐binding protein (CBP) in skeletal muscle transcriptional homeostasis and physiology in adult mice. Methods Mice with skeletal muscle‐specific and inducible knockout of p300 and CBP (PCKO) were generated by crossing mice with a tamoxifen‐inducible Cre recombinase expressed under the human α‐skeletal actin promoter with mice having LoxP sites flanking exon 9 of the Ep300 and Crebbp genes. Knockout of PCKO was induced at 13–15 weeks of age via oral gavage of tamoxifen for 5 days to both PCKO and littermate control [wildtype (WT)] mice. Body composition, food intake, and muscle function were assessed on day 0 (D0) through 5 (D5). Microarray and tandem mass tag mass spectrometry analyses were performed to assess global RNA and protein levels in skeletal muscle of PCKO and WT mice. Results At D5 after initiating tamoxifen treatment, there was a reduction in body weight (?15%), food intake (?78%), stride length (?46%), and grip strength (?45%) in PCKO compared with WT mice. Additionally, ex vivo contractile function [tetanic tension (kPa)] was severely impaired in PCKO vs. WT mice at D3 (~70–80% lower) and D5 (~80–95% lower) and resulted in lethality within 1 week—a phenotype that is reversed by the presence of a single allele of either p300 or CBP. The impaired muscle function in PCKO mice was paralleled by substantial transcriptional alterations (3310 genes; false discovery rate 0.1), especially in gene networks central to muscle contraction and structural integrity. This transcriptional uncoupling was accompanied by changes in protein expression patterns indicative of impaired muscle function, albeit to a smaller magnitude (446 proteins; fold‐change 1.25; false discovery rate 0.1). Conclusions These data reveal that p300 and CBP are required for the control and maintenance of contractile function and transcriptional homeostasis in skeletal muscle and, ultimately, organism survival. By extension, modulating p300/CBP function may hold promise for the treatment of disorders characterized by impaired contractile function in humans.
机译:背景技术可逆ε-氨基乙酰化的赖氨酸残基调节转录以及代谢助焊剂;然而,在骨骼肌生理学和功能中的特异性赖氨酸乙酰转移酶的角色是未知的。在这项研究中,我们研究了相关乙酰转移酶P300和CAMP反应元素结合蛋白结合蛋白(CBP)在成年小鼠中的骨骼肌转录稳态和生理学中的作用。方法通过用小鼠在人α-骨骼肌动蛋白启动子下与具有HOXP位点的小鼠侧翼EXON 9的小鼠交叉小鼠,通过将小鼠交叉小鼠和CBP(PCKO)与P300和CBP(PCKO)的小鼠产生骨骼肌特异性和CBP(PCKO)的小鼠。 CREBBP基因。 Pcko的敲除通过Tamoxifen的口服饲喂5天,诱导PcKo和枯乳液(WT)]小鼠的13-15周。在第0天(D0)至5(D5)上评估身体成分,食物摄入和肌肉功能。进行微阵列和串联质量标签质谱分析,以评估PcKo和WT小鼠骨骼肌中的全球RNA和蛋白质水平。结果在D5开始后启动他莫昔芬治疗后,体重减少(?15%),食物摄入量(α78%),高长长度(α46%),与wt相比,Pcko中的握力(Δ45%)老鼠。另外,在D3(〜70-80%)和D5(〜80-95%较低)的Pcko与Wt小鼠中,胎儿收缩函数[滴答张力(KPA)]严重受损,并在1周内导致致死率 - 通过P300或CBP的单个等位基因存在逆转的表型。 PCKO小鼠的受损肌肉功能平行于大量转录改变(3310个基因;假发现率<0.1),特别是在基因网络中肌肉收缩和结构完整性。该转录的解偶联伴随着指示肌肉功能受损的蛋白质表达模式的变化,尽管较小的幅度(446个蛋白质;折叠变化> 1.25;假发现率<0.1)。结论这些数据表明,P300和CBP是对骨骼肌中的收缩功能和转录稳态的控制和维护所必需的,并且最终是有机体生存。通过延伸,调制P300 / CBP功能可以保持承诺治疗以人类的收缩功能受损的障碍。
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