During muscle ageing the activation of the mitogenic signalling is not sufficient to guarantee cellular duplication.

The Italian journal of biochemistry Pub Date : 2005-09-01
Francesca Buricchi, Paola Chiarugi, Tania Fiaschi, Elisa Giannoni, Lucia Magnelli, Elena Fanti, Giovanni Raugei, Giampietro Ramponi
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Abstract

Satellite cells are quiescent cells that can be induced to proliferate by a variety of stimuli such as injury and exercise, providing in this way a source of new myoblasts that repopulate the damaged muscle. It is well known that, as senescence progresses, the muscle regenerative potential progressively diminishes, but the molecular mechanisms underlying this process are not yet completely defined. Many growth factors, including Platelet Derived Growth Factor (PDGF-BB)*, have been associated to satellite cells activation, acting as potent mitogenic agents for these cells. The aim of this study is to explore if the diminished response of senescent myoblasts to growth stimuli could be due to the inability to receive and transduce hormonal signals. Herein, we demonstrate that that although PDGF-r expression is down-regulated during senescence, the receptor is fully able to be phosphorylated and to transmit the signal. Although senescent myoblasts display increased level of phosphotyrosine phosphatases (PTPs), neither the PDGF receptor (PDGF-r) phosphorylation level nor the citosolic signal transduction machinery is affected. Indeed, we demonstrated that senescent human myoblasts are able to initiate a proper mitogenic signalling cascade, since the activation of mitogen-activated protein kinases (MAPK) and phosphatydil inositole 3 kinase (PI-3K) pathways is similar in young and senescent cells. Our data underline that, despite a conserved capability to activate PDGF-r after agonist stimulation and a functional signal transduction machinery, the mitogenic signal initiated by growth factors in senescent cells does not lead to cell division, being unable to overcome the cell cycle block, likely caused by the accumulation of the inhibitor p21WAF1.

在肌肉老化过程中,有丝分裂信号的激活不足以保证细胞复制。
卫星细胞是静止的细胞,可以通过各种刺激(如损伤和运动)诱导增殖,以这种方式提供新的成肌细胞的来源,使受损的肌肉重新填充。众所周知,随着衰老的进展,肌肉再生潜力逐渐减少,但这一过程背后的分子机制尚未完全确定。许多生长因子,包括血小板衍生生长因子(PDGF-BB)*,与卫星细胞激活有关,作为这些细胞的有效有丝分裂剂。本研究的目的是探讨衰老的成肌细胞对生长刺激的反应减弱是否可能是由于无法接收和传导激素信号。本研究表明,尽管PDGF-r在衰老过程中表达下调,但该受体完全能够磷酸化并传递信号。尽管衰老的成肌细胞显示出磷酸化酪氨酸磷酸酶(ptp)水平的增加,但PDGF受体(PDGF-r)磷酸化水平和胞质信号转导机制都不受影响。事实上,我们证明了衰老的人类成肌细胞能够启动适当的有丝分裂信号级联,因为在年轻细胞和衰老细胞中,有丝分裂原活化蛋白激酶(MAPK)和磷酸二醇肌醇3激酶(PI-3K)途径的激活是相似的。我们的数据强调,尽管在激动剂刺激后具有激活PDGF-r的保守能力和功能信号转导机制,但衰老细胞中生长因子启动的有丝分裂信号不会导致细胞分裂,无法克服细胞周期阻滞,这可能是由抑制剂p21WAF1的积累引起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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