MyoD公司
C2C12型
细胞生物学
心肌细胞
FOXO3公司
骨骼肌
激酶
蛋白激酶A
肌生成抑制素
信号转导
生物
肌动蛋白
化学
肌发生
内分泌学
蛋白激酶B
作者
Mathilde Soulez,Pierre‐Luc Tanguay,Florence Dô,Junio Dort,Colin Crist,Alexey Kotlyarov,Matthias Gaestel,Mathieu Ferron,Nicolas A. Dumont,Sylvain Meloche
摘要
mice. At the cellular level, genetic or pharmacological inactivation of ERK3 or MK5 induces precocious differentiation of C2C12 or primary myoblasts, concomitant with MyoD activation. Reciprocally, ectopic expression of activated MK5 inhibits myogenic differentiation. Mechanistically, we show that MK5 directly phosphorylates FoxO3, promoting its degradation and reducing its association with MyoD. Depletion of FoxO3 rescues in part the premature differentiation of C2C12 myoblasts observed upon inactivation of ERK3 or MK5. Our findings reveal that ERK3 and its substrate MK5 act in a linear signaling pathway to control postnatal myogenic differentiation.
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