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缺氧通过加速MyoD降解抑制成肌分化。

Hypoxia inhibits myogenic differentiation through accelerated MyoD degradation.

作者信息

Di Carlo Anna, De Mori Roberta, Martelli Fabio, Pompilio Giulio, Capogrossi Maurizio C, Germani Antonia

机构信息

Laboratorio di Biologia Vascolare e Terapia Genica, Centro Cardiologico Monzino, Istituto di Ricovero e Cura a Carattere Scientifico, 20138 Milan, Italy.

出版信息

J Biol Chem. 2004 Apr 16;279(16):16332-8. doi: 10.1074/jbc.M313931200. Epub 2004 Feb 1.

Abstract

Cells undergo a variety of biological responses when placed in hypoxic conditions, including alterations in metabolic state and growth rate. Here we investigated the effect of hypoxia on the ability of myogenic cells to differentiate in culture. Exposure of myoblasts to hypoxia strongly inhibited multinucleated myotube formation and the expression of differentiation markers. We showed that hypoxia reversibly inhibited MyoD, Myf5, and myogenin expression. One key step in skeletal muscle differentiation involves the up-regulation of the cell cycle-dependent kinase inhibitors p21 and p27 as well as the product of the retinoblastoma gene (pRb). Myoblasts cultured under hypoxic conditions in differentiation medium failed to up-regulate both p21 and pRb despite the G1 cell cycle arrest, as evidenced by p27 accumulation and pRb hypophosphorylation. Hypoxia-dependent inhibition of differentiation was associated with MyoD degradation by the ubiquitin-proteasome pathway. MyoD overexpression in C2C12 myoblasts overrode the differentiation block imposed by hypoxic conditions. Thus, hypoxia by inducing MyoD degradation blocked accumulation of early myogenic differentiation markers such as myogenin and p21 and pRb, preventing both permanent cell cycle withdraw and terminal differentiation. Our study revealed a novel anti-differentiation effect exerted by hypoxia in myogenic cells and identified MyoD degradation as a relevant target of hypoxia.

摘要

当置于缺氧条件下时,细胞会经历多种生物学反应,包括代谢状态和生长速率的改变。在此,我们研究了缺氧对成肌细胞在培养中分化能力的影响。将成肌细胞暴露于缺氧环境中会强烈抑制多核肌管的形成以及分化标志物的表达。我们发现缺氧可逆性地抑制MyoD、Myf5和肌细胞生成素的表达。骨骼肌分化的一个关键步骤涉及细胞周期依赖性激酶抑制剂p21和p27以及视网膜母细胞瘤基因(pRb)产物的上调。尽管G1期细胞周期停滞,但在分化培养基中于缺氧条件下培养的成肌细胞未能上调p21和pRb,p27积累和pRb低磷酸化证明了这一点。缺氧依赖性的分化抑制与通过泛素 - 蛋白酶体途径降解MyoD有关。在C2C12成肌细胞中过表达MyoD克服了缺氧条件施加的分化阻滞。因此,缺氧通过诱导MyoD降解阻断了早期成肌分化标志物如肌细胞生成素、p21和pRb的积累,阻止了永久性细胞周期退出和终末分化。我们的研究揭示了缺氧在成肌细胞中发挥的一种新的抗分化作用,并确定MyoD降解是缺氧的一个相关靶点。

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