Ogawa Masahiro, Kitakaze Tomoya, Harada Naoki, Yamaji Ryoichi
Division of Applied Life SciencesGraduate School of Life and Environmental Sciences, Osaka Prefecture University, Osaka 5998531, Japan.
Division of Applied Life SciencesGraduate School of Life and Environmental Sciences, Osaka Prefecture University, Osaka 5998531, Japan
J Endocrinol. 2015 Jun;225(3):135-45. doi: 10.1530/JOE-15-0128. Epub 2015 Apr 21.
17β-Estradiol (E₂) is thought to be responsible for sex-specific differences in skeletal muscle mass. The biological function of E₂ is exerted through its binding to estrogen receptor α (ERα). The expression of ubiquitin-specific peptidase 19 (USP19) is upregulated during muscle atrophy and by E₂-activated ERα. Here, we investigated the involvement of USP19 in sex difference in muscle mass in young mice. Knockdown of USP19 in hindlimb muscles increased the mass and fiber size in soleus muscle in females but not males. Using Usp19 promoter reporter constructs, a functional half-estrogen response element (hERE) was identified in intron 1 of Usp19. ERα bound to hERE in an E₂-dependent manner in C2C12 myoblasts and in soleus muscle in ovariectomized (OVX) female mice. Furthermore, under normal physiological conditions, ERα bound to hERE in soleus muscle only in females. In contrast, administration of E₂ resulted in increased Usp19 mRNA expression, decreased muscle mass, and recruitment of ERα to hERE in soleus muscle in males. Knockdown of ERα in hindlimb muscles decreased Usp19 mRNA expression and increased the mass of soleus muscle only in females. Knockdown of USP19 resulted in increased levels of ubiquitin conjugates in soleus muscle in females. OVX increased the levels of ubiquitin conjugates and administration of E₂ decreased OVX-induced levels of ubiquitin conjugates. These results demonstrate that in soleus muscle in young female mice under physiological conditions, E₂ upregulates USP19 expression through ERα and consequently leads to decreases in ubiquitin conjugates and muscle mass.
17β-雌二醇(E₂)被认为是骨骼肌质量性别差异的原因。E₂的生物学功能是通过其与雌激素受体α(ERα)结合来发挥的。泛素特异性肽酶19(USP19)的表达在肌肉萎缩期间以及由E₂激活的ERα上调。在这里,我们研究了USP19在年轻小鼠肌肉质量性别差异中的作用。敲低后肢肌肉中的USP19可增加雌性小鼠比目鱼肌的质量和纤维大小,但对雄性小鼠没有影响。使用Usp19启动子报告基因构建体,在Usp19的内含子1中鉴定出一个功能性半雌激素反应元件(hERE)。在C2C12成肌细胞和去卵巢(OVX)雌性小鼠的比目鱼肌中,ERα以E₂依赖的方式与hERE结合。此外,在正常生理条件下,ERα仅在雌性比目鱼肌中与hERE结合。相反,给予E₂会导致雄性比目鱼肌中Usp19 mRNA表达增加、肌肉质量降低以及ERα募集到hERE。敲低后肢肌肉中的ERα可降低Usp19 mRNA表达,并且仅在雌性小鼠中增加比目鱼肌的质量。敲低USP19会导致雌性比目鱼肌中泛素缀合物水平升高。OVX会增加泛素缀合物水平,而给予E₂会降低OVX诱导的泛素缀合物水平。这些结果表明,在生理条件下,年轻雌性小鼠的比目鱼肌中,E₂通过ERα上调USP19表达,从而导致泛素缀合物和肌肉质量降低。