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基质金属蛋白酶-2的细胞外沉积控制肌肉再生过程中肌生成程序的时间。

Extracellular deposition of matrilin-2 controls the timing of the myogenic program during muscle regeneration.

作者信息

Deák Ferenc, Mátés Lajos, Korpos Eva, Zvara Agnes, Szénási Tibor, Kiricsi Mónika, Mendler Luca, Keller-Pintér Anikó, Ozsvári Béla, Juhász Hajnalka, Sorokin Lydia, Dux László, Mermod Nicolas, Puskás László G, Kiss Ibolya

机构信息

Institute of Biochemistry, Biological Research Centre, Hungarian Academy of Sciences, Szeged, H-6701 Szeged, Hungary.

Institute of Biochemistry, Biological Research Centre, Hungarian Academy of Sciences, Szeged, H-6701 Szeged, Hungary Institute of Genetics, Biological Research Centre, Hungarian Academy of Sciences, Szeged, H-6701 Szeged, Hungary

出版信息

J Cell Sci. 2014 Aug 1;127(Pt 15):3240-56. doi: 10.1242/jcs.141556. Epub 2014 Jun 3.

Abstract

Here, we identify a role for the matrilin-2 (Matn2) extracellular matrix protein in controlling the early stages of myogenic differentiation. We observed Matn2 deposition around proliferating, differentiating and fusing myoblasts in culture and during muscle regeneration in vivo. Silencing of Matn2 delayed the expression of the Cdk inhibitor p21 and of the myogenic genes Nfix, MyoD and Myog, explaining the retarded cell cycle exit and myoblast differentiation. Rescue of Matn2 expression restored differentiation and the expression of p21 and of the myogenic genes. TGF-β1 inhibited myogenic differentiation at least in part by repressing Matn2 expression, which inhibited the onset of a positive-feedback loop whereby Matn2 and Nfix activate the expression of one another and activate myoblast differentiation. In vivo, myoblast cell cycle arrest and muscle regeneration was delayed in Matn2(-/-) relative to wild-type mice. The expression levels of Trf3 and myogenic genes were robustly reduced in Matn2(-/-) fetal limbs and in differentiating primary myoblast cultures, establishing Matn2 as a key modulator of the regulatory cascade that initiates terminal myogenic differentiation. Our data thus identify Matn2 as a crucial component of a genetic switch that modulates the onset of tissue repair.

摘要

在此,我们确定了基质金属蛋白酶-2(Matn2)细胞外基质蛋白在控制成肌分化早期阶段中的作用。我们观察到Matn2在体外培养的增殖、分化和融合的成肌细胞周围以及体内肌肉再生过程中沉积。Matn2的沉默延迟了细胞周期蛋白依赖性激酶抑制剂p21以及成肌基因Nfix、MyoD和Myog的表达,这解释了细胞周期退出延迟和成肌细胞分化受阻的现象。Matn2表达的恢复恢复了分化以及p21和成肌基因的表达。转化生长因子-β1(TGF-β1)至少部分通过抑制Matn2表达来抑制成肌分化,而Matn2表达的抑制会阻碍一个正反馈环的启动,在这个正反馈环中,Matn2和Nfix相互激活彼此的表达并激活成肌细胞分化。在体内,与野生型小鼠相比,Matn2基因敲除小鼠的成肌细胞周期停滞和肌肉再生延迟。在Matn2基因敲除小鼠的胎儿肢体以及分化的原代成肌细胞培养物中,Trf3和成肌基因的表达水平显著降低,这确立了Matn2作为启动终末成肌分化的调节级联反应的关键调节因子的地位。因此,我们的数据确定Matn2是调节组织修复起始的遗传开关的关键组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f824/4117230/3b9b7d30609b/jcs-127-15-3240-f01.jpg

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