Liu Xin-Hua, Yao Shen, Levine Alice C, Kirschenbaum Alexander, Pan Jiangping, Wu Yong, Qin Weiping, Collier Lauren, Bauman William A, Cardozo Christopher P
National Center of Excellence for the Medical Consequences of Spinal Cord Injury, James J Peter VA Medical Center, Bronx, New York 10468, USA.
J Androl. 2012 Nov-Dec;33(6):1216-23. doi: 10.2164/jandrol.112.016428. Epub 2012 Jun 14.
Nandrolone, an anabolic steroid, slows denervation atrophy of rat muscle, prevents denervation-induced nuclear accumulation of intracellular domain of the Notch receptor, and elevates expression of Numb. Numb acts as an inhibitor of Notch signaling and promotes myogenic differentiation of satellite cells. Turnover of Numb is regulated by mdm2, an E3 ubiquitin ligase. With these considerations in mind, we investigated the effects of nandrolone on the expression of Numb and mdm2 proteins and determined the effect of mdm2 on nandrolone-induced alterations in Numb protein in C2C12 myoblasts. When C2C12 cells were cultured in a medium favoring differentiation (Dulbecco modified Eagle medium containing 2% horse serum), nandrolone up-regulated Numb protein levels in a time-dependent manner and prolonged Numb protein half-life from 10 to 18 hours. In contrast, nandrolone reduced the expression of mdm2 protein. To determine whether the decreased mdm2 expression induced by nandrolone was responsible for the increased levels and prolonged half-life of Numb protein in this cell line, mdm2-small interfering RNA (siRNA) was employed to inhibit mdm2 expression. Compared to cells transfected with scrambled siRNA (negative control), transfection with mdm2-siRNA increased basal Numb protein expression but abolished the further increase in Numb protein levels by nandrolone. In addition, transfection of mdm2-siRNA mimicked the effect of nandrolone to prolong the half-life of Numb protein. Moreover, when C2C12 cells were forced to overexpress mdm2, there was a significant decline in the expression of both basal and inducible Numb protein. Our data suggest that nandrolone, by a novel mechanism for this agent in a muscle cell type, increases Numb protein levels in C2C12 myoblasts by stabilizing Numb protein against degradation, at least in part, via suppression of mdm2 expression.
诺龙是一种合成代谢类固醇,它可减缓大鼠肌肉的去神经萎缩,防止去神经诱导的Notch受体细胞内结构域在细胞核内积累,并提高Numb的表达。Numb作为Notch信号通路的抑制剂,可促进卫星细胞的成肌分化。Numb的周转受E3泛素连接酶mdm2的调节。基于这些考虑,我们研究了诺龙对Numb和mdm2蛋白表达的影响,并确定了mdm2对诺龙诱导的C2C12成肌细胞中Numb蛋白变化的影响。当C2C12细胞在有利于分化的培养基(含2%马血清的杜尔贝科改良伊格尔培养基)中培养时,诺龙以时间依赖性方式上调Numb蛋白水平,并将Numb蛋白的半衰期从10小时延长至18小时。相反,诺龙降低了mdm2蛋白的表达。为了确定诺龙诱导的mdm2表达降低是否导致该细胞系中Numb蛋白水平升高和半衰期延长,我们使用mdm2小干扰RNA(siRNA)抑制mdm2表达。与转染乱序siRNA(阴性对照)的细胞相比,转染mdm2-siRNA可增加基础Numb蛋白表达,但消除了诺龙对Numb蛋白水平的进一步升高作用。此外,转染mdm2-siRNA模拟了诺龙延长Numb蛋白半衰期的作用。此外,当C2C12细胞被迫过度表达mdm2时,基础和诱导型Numb蛋白的表达均显著下降。我们的数据表明,诺龙通过一种在肌肉细胞类型中该药物的新机制,至少部分地通过抑制mdm2表达来稳定Numb蛋白以防止其降解,从而增加C2C12成肌细胞中Numb蛋白水平。