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Eccentric Exercise Activates Novel Transcriptional Regulation of Hypertrophic Signaling Pathways Not Affected by Hormone Changes

机译:离心运动激活了不受激素变化影响的肥大信号通路的新型转录调控

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摘要

Unaccustomed eccentric exercise damages skeletal muscle tissue, activating mechanisms of recovery and remodeling that may be influenced by the female sex hormone 17β-estradiol (E2). Using high density oligonucleotide based microarrays, we screened for differences in mRNA expression caused by E2 and eccentric exercise. After random assignment to 8 days of either placebo (CON) or E2 (EXP), eighteen men performed 150 single-leg eccentric contractions. Muscle biopsies were collected at baseline (BL), following supplementation (PS), +3 hours (3H) and +48 hours (48H) after exercise. Serum E2 concentrations increased significantly with supplementation (P<0.001) but did not affect microarray results. Exercise led to early transcriptional changes in striated muscle activator of Rho signaling (STARS), Rho family GTPase 3 (RND3), mitogen activated protein kinase (MAPK) regulation and the downstream transcription factor FOS. Targeted RT-PCR analysis identified concurrent induction of negative regulators of calcineurin signaling RCAN (P<0.001) and HMOX1 (P = 0.009). Protein contents were elevated for RND3 at 3H (P = 0.02) and FOS at 48H (P<0.05). These findings indicate that early RhoA and NFAT signaling and regulation are altered following exercise for muscle remodeling and repair, but are not affected by E2.
机译:不习惯的离心运动会损害骨骼肌组织,激活恢复和重塑的机制,这可能受到女性性激素17β-雌二醇(E2)的影响。使用基于高密度寡核苷酸的微阵列,我们筛选了由E2和离心运动引起的mRNA表达差异。随机分配安慰剂(CON)或E2(EXP)8天后,十八名男性进行了150次单腿偏心收缩。运动后+3小时(3H)和+48小时(48H)在补充(PS)的基线(BL)收集肌肉活检。补充血清E2浓度显着增加(P <0.001),但不影响芯片结果。运动导致Rho信号的横纹肌激活物(STARS),Rho家族GTPase 3(RND3),促分裂原活化蛋白激酶(MAPK)调节和下游转录因子FOS的早期转录变化。靶向RT-PCR分析确定了钙调神经磷酸信号RCAN(P <0.001)和HMOX1(P = 0.009)的负调节剂的同时诱导。 RND3在3H(P <= 0.02)和FOS在48H(P <0.05)的蛋白质含量升高。这些发现表明,运动后,早期的RhoA和NFAT信号传导和调节发生了改变,以进行肌肉重塑和修复,但不受E2的影响。

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