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Role of cyclic AMP sensor Epac1 in masseter muscle hypertrophy and myosin heavy chain transition induced by beta(2)-adrenoceptor stimulation

机译:循环AMP传感器Epac1在β(2)-肾上腺素受体刺激诱导的咬肌增生和肌球蛋白重链过渡中的作用

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The predominant isoform of -adrenoceptor (-AR) in skeletal muscle is (2)-AR and that in the cardiac muscle is (1)-AR. We have reported that Epac1 (exchange protein directly activated by cAMP1), a new protein kinase A-independent cAMP sensor, does not affect cardiac hypertrophy in response to pressure overload or chronic isoproterenol (isoprenaline) infusion. However, the role of Epac1 in skeletal muscle hypertrophy remains poorly understood. We thus examined the effect of disruption of Epac1, the major Epac isoform in skeletal muscle, on masseter muscle hypertrophy induced by chronic (2)-AR stimulation with clenbuterol (CB) in Epac1-null mice (Epac1KO). The masseter muscle weight/tibial length ratio was similar in wild-type (WT) and Epac1KO at baseline and was significantly increased in WT after CB infusion, but this increase was suppressed in Epac1KO. CB treatment significantly increased the proportion of myosin heavy chain (MHC) IIb at the expense of that of MHC IId/x in both WT and Epac1KO, indicating that Epac1 did not mediate the CB-induced MHC isoform transition towards the faster isoform. The mechanism of suppression of CB-mediated hypertrophy in Epac1KO is considered to involve decreased activation of Akt signalling. In addition, CB-induced histone deacetylase 4 (HDAC4) phosphorylation on serine 246 mediated by calmodulin kinase II (CaMKII), which plays a role in skeletal muscle hypertrophy, was suppressed in Epac1KO. Our findings suggest that Epac1 plays a role in (2)-AR-mediated masseter muscle hypertrophy, probably through activation of both Akt signalling and CaMKII/HDAC4 signalling.
机译:骨骼肌中-肾上腺素能受体(-AR)的主要同工型是(2)-AR,而心肌中的主要同工型是(1)-AR。我们已经报道了Epac1(由cAMP1直接激活的交换蛋白),一种新的独立于蛋白激酶A的cAMP传感器,在压力超负荷或慢性异丙肾上腺素(异丙肾上腺素)输注后不会影响心脏肥大。但是,Epac1在骨骼肌肥大中的作用仍然知之甚少。因此,我们检查了Epac1无效小鼠(Epac1KO)中慢性(2)-AR盐酸克仑特罗(CB)刺激引起的骨骼肌主要Epac亚型Epac1破坏的影响。在基线时,野生型(WT)和Epac1KO的咬肌重量/胫骨长度比相似,并且在CB输注后WT中的咬肌重量/胫骨长度比明显增加,但Epac1KO抑制了该增加。 CB处理显着增加了肌球蛋白重链(MHC)IIb的比例,但在WT和Epac1KO中均以MHC IId / x的代价为代价,表明Epac1不介导CB诱导的MHC同工型向更快的同工型过渡。抑制Epac1KO中CB介导的肥大的机制被认为与Akt信号的激活减少有关。此外,在Epac1KO中抑制了由钙调蛋白激酶II(CaMKII)介导的丝氨酸246上CB诱导的丝氨酸246的组蛋白脱乙酰基酶4(HDAC4)磷酸化。我们的发现表明,Epac1可能通过激活Akt信号和CaMKII / HDAC4信号而在(2)-AR介导的咬肌肥大中起作用。

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