Esser K, Nelson T, Lupa-Kimball V, Blough E
School of Kinesiology, University of Illinois at Chicago, Illinois 60608, USA.
J Biol Chem. 1999 Apr 23;274(17):12095-102. doi: 10.1074/jbc.274.17.12095.
Previous experiments showed that activity of the -800-base pair MLC2slow promoter was 75-fold higher in the innervated soleus (SOL) compared with the noninnervated SOL muscles. Using in vivo DNA injection of MLC2slow promoter-luciferase constructs, the aim of this project was to identify regulatory sites and potential transcription factors important for slow nerve-dependent gene expression. Three sites within the proximal promoter (myocyte enhancer factor-2 (MEF2), E-box, and CACC box) were individually mutated, and the effect on luciferase expression was determined. There was no change in luciferase expression in the SOL and extensor digitorum longus (EDL) muscles when the E-box was mutated. In contrast, the MEF2 mutation resulted in a 30-fold decrease in expression in the innervated SOL muscles (10.3 versus 0.36 normalized relative light units (RLUs)). Transactivation of the MLC2slow promoter by overexpressing MEF2 was only seen in the innervated SOL (676,340 versus 2,225,957 RLUs; p < 0.01) with no effect in noninnervated SOL or EDL muscles. These findings suggest that the active MLC2slow promoter is sensitive to MEF2 levels, but MEF2 levels alone do not determine nerve-dependent expression. Mutation of the CACC box resulted in a significant up-regulation in the EDL muscles (0.23 versus 4.08 normalized RLUs). With the CACC box mutated, overexpression of MEF2 was sufficient to transactivate the MLC2slow promoter in noninnervated SOL muscles (27,536 versus 1, 605,797 RLUs). Results from electrophoretic mobility shift and supershift assays confirm MEF2 protein binding to the MEF2 site and demonstrate specific binding to the CACC sequence. These results suggest a model for nerve-dependent regulation of the MLC2slow promoter in which derepression occurs through the CACC box followed by quantitative expression through enhanced MEF2 activation.
先前的实验表明,与未受神经支配的比目鱼肌(SOL)相比,受神经支配的比目鱼肌中-800碱基对的慢肌肌球蛋白轻链2(MLC2slow)启动子活性高75倍。本项目旨在通过体内注射MLC2slow启动子-荧光素酶构建体,确定对慢神经依赖性基因表达重要的调控位点和潜在转录因子。近端启动子内的三个位点(肌细胞增强因子2(MEF2)、E盒和CACC盒)分别发生突变,并测定其对荧光素酶表达的影响。当E盒发生突变时,SOL和趾长伸肌(EDL)中的荧光素酶表达没有变化。相反,MEF2突变导致受神经支配的SOL肌肉中的表达下降30倍(标准化相对光单位(RLU)分别为10.3和0.36)。仅在受神经支配的SOL中观察到过表达MEF2对MLC2slow启动子的反式激活(RLU分别为676,340和2,225,957;p<0.01),在未受神经支配的SOL或EDL肌肉中无影响。这些发现表明,活性MLC2slow启动子对MEF2水平敏感,但仅MEF2水平不能决定神经依赖性表达。CACC盒突变导致EDL肌肉中显著上调(标准化RLU分别为0.23和4.08)。在CACC盒发生突变的情况下,过表达MEF2足以在未受神经支配的SOL肌肉中反式激活MLC2slow启动子(RLU分别为27,536和1,605,797)。电泳迁移率变动分析和超迁移分析结果证实MEF2蛋白与MEF2位点结合,并证明与CACC序列特异性结合。这些结果提示了一种MLC2slow启动子神经依赖性调控模型,其中通过CACC盒解除抑制,随后通过增强MEF2激活进行定量表达。