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首页> 外文期刊>Clinical Science >The kinin B1 receptor regulates muscle-specific E3 ligases expression and is involved in skeletal muscle mass control
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The kinin B1 receptor regulates muscle-specific E3 ligases expression and is involved in skeletal muscle mass control

机译:Kinin B1受体调节肌肉特异性E3连接酶的表达,并参与骨骼肌肿块控制

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摘要

Regulation of muscle mass depends on the balance between synthesis and degradation of proteins, which is under the control of different signalling pathways regulated by hormonal, neural and nutritional stimuli. Such stimuli are altered in several pathologies, including COPD (chronic obstructive pulmonary disease), diabetes, AIDS and cancer (cachexia), as well as in some conditions such as immobilization and aging (sarcopenia), leading to muscle atrophy, which represents a significant contribution to patient morbidity. The KKS (kallikrein-kinin system) is composed of the enzymes kallikreins, which generate active peptides called kinins that activate two G-protein-coupled receptors, namely B1 and B2, which are expressed in a variety of tissues. The local modulation of the KKS may account for its participation in different diseases, such as those of the cardiovascular, renal and central nervous systems, cancer and many inflammatory processes, including pain. Owing to such pleiotropic actions of the KKS by local modulatory events and the probable fine-tuning of associated signalling cascades involved in skeletal muscle catabolic disorders [for example, NF-κB (nuclear factor κB) and PI3K (phosphoinositide 3-kinase)/Akt pathways], we hypothesized that KKS might contribute to the modulation of intracellular responses in atrophying skeletal muscle. Our results show that kinin B1 receptor activation induced a decrease in the diameter of C2C12 myotubes, activation of NF-κB, a decrease in Akt phosphorylation levels, and an increase in the mRNA levels of the ubiquitin E3 ligases atrogin-1 and MuRF-1 (muscle RING-finger protein-1). In vivo, we observed an increase in kinin B1 receptor mRNA levels in an androgen-sensitive model of muscle atrophy. In the same model, inhibition of the kinin 1 receptor with a selective antagonist resulted in an impairment of atrogin-1 and MuRF-1 expression and IκB (inhibitor of NF-κB) phosphorylation. Moreover, knockout of the kinin 1 receptor in mice led to an impairment in MuRF-1 mRNA expression after induction of LA (levator ani) muscle atrophy. In conclusion, using pharmacological and gene-ablation tools, we have obtained evidence that the kinin 1 receptor plays a significant role in the regulation of skeletal muscle proteolysis in the LA muscle atrophy model.
机译:肌肉质量的调节取决于蛋白质的合成和降解之间的平衡,这是通过激素,神经和营养刺激调节的不同信号通路的控制。这种刺激在几种病理中改变,包括COPD(慢性阻塞性肺部疾病),糖尿病,艾滋病和癌症(恶病症),以及在固定和衰老(SARCOPENIA)的某些条件下,导致肌肉萎缩,这代表着显着的肌肉萎缩对患者发病率的贡献。 KKS(Kallikrein-kinin系统)由酶Kallikreins组成,其产生称为Kinins的活性肽,其激活两个G蛋白偶联受体,即B1和B2,其在各种组织中表达。 KKS的局部调制可能会占其参与不同疾病,例如心血管,肾病和中枢神经系统,癌症和许多炎症过程,包括疼痛。由于局部调制事件和骨骼肌分解紊乱中相关的信号传导级联的相关信号级联的可能细微调整[例如,NF-κB(核因子κB)和pi3k(磷酸膦酸3-激酶)/ akt途径],我们假设KKS可能有助于调节萎缩骨骼肌中的细胞内反应。我们的研究结果表明,Kinin B1受体激活诱导C2C12肌管的直径降低,NF-κB的激活,AKT磷酸化水平的降低,以及泛素E3连接酶的MRNA水平的增加,术语 - 1和Murf-1的增加(肌肉环手指蛋白-1)。在体内,我们观察到肌肉萎缩的雄激素敏感模型中的生育B1受体mRNA水平增加。在相同的模型中,具有选择性拮抗剂的Kinin 1受体的抑制导致紫外-1和Murf-1表达和IκB(NF-κB抑制剂)磷酸化的损伤。此外,小鼠中的Kinin 1受体的敲除导致Murf-1 mRNA表达的损伤,诱导La(Levator Ani)肌肉萎缩后。总之,使用药理学和基因消融工具,我们已经证明了Kinin 1受体在La肌萎缩模型的骨骼肌蛋白分解调节中起着重要作用。

著录项

  • 来源
    《Clinical Science》 |2014年第4期|共10页
  • 作者单位

    Department of Biochemistry and Immunology Faculty of Medicine at Ribeir?o Preto University of S?o;

    Department of Biochemistry and Immunology Faculty of Medicine at Ribeir?o Preto University of S?o;

    Department of Biochemistry and Immunology Faculty of Medicine at Ribeir?o Preto University of S?o;

    Department of Pharmacology Escola Paulista de Medicina Universidade Federal de S?o Paulo 04039;

    Department of Biophysics Escola Paulista de Medicina Universidade Federal de S?o Paulo 04039-032;

    Department of Biochemistry and Immunology Faculty of Medicine at Ribeir?o Preto University of S?o;

    Department of Pharmacology Escola Paulista de Medicina Universidade Federal de S?o Paulo 04039;

    Department of Biochemistry and Immunology Faculty of Medicine at Ribeir?o Preto University of S?o;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 临床医学;
  • 关键词

    G-protein-coupled receptor (GPCR); muscle atrophy; Protein metabolism; Signal transduction; Ubiquitin-proteasome system;

    机译:G蛋白偶联受体(GPCR);肌肉萎缩;蛋白质代谢;信号转导;泛素 - 蛋白酶体系;

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