Kumar Meena S, Hendrix Jennifer A, Johnson A Daniel, Owens Gary K
Department of Molecular Physiology and Biological Physics, University of Virginia, 415 Lane Rd, MR5 Room 1220, PO Box 801394, Charlottesville, Va 22908, USA.
Circ Res. 2003 May 2;92(8):840-7. doi: 10.1161/01.RES.0000069031.55281.7C. Epub 2003 Mar 27.
Changes in the differentiated state of smooth muscle cells (SMCs) play a key role in vascular diseases, yet the mechanisms controlling SMC differentiation are still largely undefined. We addressed the role of basic helix-loop-helix (bHLH) proteins in SMC differentiation by first determining the role of two E-box (CAnnTG) motifs, binding sites for bHLH proteins, in the transcriptional regulation of the SMC differentiation marker gene, smooth muscle alpha-actin (SM alpha-actin), in vivo. Mutation of one or both E-boxes significantly reduced the expression of a -2560- to 2784-bp SM alpha-actin promoter/LacZ reporter gene in vivo in transgenic mice. We then determined the potential role of class I bHLH proteins, E12, E47, HEB, and E2-2, in SM alpha-actin regulation. In cotransfection experiments, E12, HEB, and E2-2 activated the SM alpha-actin promoter. Activation by HEB and E2-2 was synergistic with serum response factor. Additionally, the dominant-negative/inhibitory HLH proteins, Id2, Id3, and Twist, inhibited both the E12 and serum response factor-induced activations of the SM alpha-actin promoter. Finally, we demonstrated that E2A proteins (E12/E47) specifically bound the E-box-containing region of the SM alpha-actin promoter in vivo in the context of intact chromatin in SMCs. Taken together, these results provide the first evidence of E-box-dependent regulation of a SMC differentiation marker gene in vivo in transgenic mice. Moreover, they demonstrate a potential role for class I bHLH factors and their inhibitors, Id and Twist, in SM alpha-actin regulation and suggest that these factors may play an important role in control of SMC differentiation and phenotypic modulation.
平滑肌细胞(SMC)分化状态的改变在血管疾病中起关键作用,但控制SMC分化的机制仍大多未明确。我们通过首先确定两个E盒(CAnnTG)基序(bHLH蛋白的结合位点)在体内对SMC分化标记基因平滑肌α-肌动蛋白(SMα-肌动蛋白)转录调控中的作用,来探讨碱性螺旋-环-螺旋(bHLH)蛋白在SMC分化中的作用。在转基因小鼠体内,一个或两个E盒的突变显著降低了-2560至2784碱基对的SMα-肌动蛋白启动子/LacZ报告基因的表达。然后我们确定了I类bHLH蛋白E12、E47、HEB和E2-2在SMα-肌动蛋白调控中的潜在作用。在共转染实验中,E12、HEB和E2-2激活了SMα-肌动蛋白启动子。HEB和E2-2的激活与血清反应因子协同。此外,显性负性/抑制性HLH蛋白Id2、Id3和Twist抑制了E12和血清反应因子诱导的SMα-肌动蛋白启动子的激活。最后,我们证明E2A蛋白(E12/E47)在体内SMC完整染色质的背景下特异性结合SMα-肌动蛋白启动子的含E盒区域。综上所述,这些结果提供了转基因小鼠体内E盒依赖性调控SMC分化标记基因的首个证据。此外,它们证明了I类bHLH因子及其抑制剂Id和Twist在SMα-肌动蛋白调控中的潜在作用,并表明这些因子可能在控制SMC分化和表型调节中起重要作用。