Sharma Girish, Goalstone Marc L
The Department of Medicine, University of Colorado, Denver Health Sciences Center, Denver, 80220, USA.
Mol Cell Endocrinol. 2005 Dec 21;245(1-2):93-104. doi: 10.1016/j.mce.2005.10.027. Epub 2005 Dec 13.
We recently demonstrated that dominant negative FTase/GGTase I alpha-subunit-inhibited (DNFTalpha-inhibited) insulin-stimulated adipocytes differentiation. DNFTalpha interferes with Ras prenylation whereby ERK1/2, CREB and the differentiation cascade are downregulated. To further investigate prenylation in adipogenesis, we examined DNFTalpha's ability to inhibit activation of ERK5, MEF2C and CREB. DNFTalpha-inhibited insulin-stimulated expression, activation and nuclear translocation of ERK5. Inhibition was associated with decreased activation of MEF2C and CREB by 80 and 78%, respectively. PD98059 did not block activation of ERK5 and MEF2C, but inhibited CREB phosphorylation by 90%. ERK5 siRNA-inhibited MEF2C activation, whereas it reduced CREB phosphorylation only 50%. Pre-adipocytes expressing DNFTalpha or treated with PD98059 were unable to differentiate to mature adipocytes, whereas pre-adipocytes transfected with ERK5 siRNA showed moderate inhibition of insulin-induced adipogenesis. Taken together, these data suggest that prenylation plays a critical role in insulin-stimulated adipogenesis, and that the ERK5 plays an important, but less crucial role in adipogenesis as compared to ERK1/2.
我们最近证明,显性负性法尼基转移酶/γ-谷氨酰转移酶Iα亚基抑制(DNFTα抑制)胰岛素刺激的脂肪细胞分化。DNFTα干扰Ras异戊二烯化,从而下调ERK1/2、CREB和分化级联反应。为了进一步研究异戊二烯化在脂肪生成中的作用,我们检测了DNFTα抑制ERK5、MEF2C和CREB激活的能力。DNFTα抑制胰岛素刺激的ERK5的表达、激活和核转位。抑制作用分别与MEF2C和CREB的激活减少80%和78%相关。PD98059不阻断ERK5和MEF2C的激活,但抑制CREB磷酸化90%。ERK5 siRNA抑制MEF2C激活,而它仅使CREB磷酸化减少50%。表达DNFTα或用PD98059处理的前脂肪细胞不能分化为成熟脂肪细胞,而用ERK5 siRNA转染的前脂肪细胞对胰岛素诱导的脂肪生成表现出中度抑制。综上所述,这些数据表明异戊二烯化在胰岛素刺激的脂肪生成中起关键作用,并且与ERK1/2相比,ERK5在脂肪生成中起重要但不那么关键的作用。