Witzenbichler B, Kureishi Y, Luo Z, Le Roux A, Branellec D, Walsh K
Division of Cardiovascular Research, St. Elizabeth's Medical Center of Boston, Tufts University School of Medicine, Boston, Massachusetts 02135, USA.
J Clin Invest. 1999 Nov;104(10):1469-80. doi: 10.1172/JCI7251.
Homeobox transcription factors specify body plan by regulating differentiation, proliferation, and migration at a cellular level. The homeobox transcription factor Gax is expressed in quiescent vascular smooth muscle cells (VSMCs), and its expression is downregulated by vascular injury or other conditions that lead to VSMC proliferation. Previous investigations demonstrate that Gax may regulate VSMC proliferation by upregulating the cyclin-dependent kinase (cdk) inhibitor p21. Here we examined whether Gax influences VSMC migration, a key feature in the development of stenotic lesions after balloon injury. Transduction of a Gax cDNA inhibited the migratory response of VSMCs toward PDGF-BB, basic fibroblast growth factor, or hepatocyte growth factor/scatter factor. Gax expression also inhibited migration of NIH.3T3 fibroblasts and embryonic fibroblasts lacking p53. Gax was unable to inhibit the migration of fibroblasts lacking p21, but this effect could be restored in these cells by providing exogenous p21 or by overexpressing another cdk inhibitor, p16. Flow cytometric analysis implicated a Gax-mediated downregulation of alpha(v)beta(3) and alpha(v)beta(5) integrin expression in VSMCs as a potential cause for reduced cell motility. Gax specifically downregulated beta(3) and beta(5) in VSMCs in culture and after acute vascular injury in vivo. Repression of integrin expression was also found in NIH 3T3 cells and p53 knockout fibroblasts, but not in p21-knockout fibroblasts, unless these cells express exogenous p21 or p16. These data suggest that cycle progression, integrin expression, and cell migration can be regulated in VSMCs by the homeobox gene product Gax.
同源框转录因子通过在细胞水平调节分化、增殖和迁移来确定身体结构。同源框转录因子Gax在静止的血管平滑肌细胞(VSMC)中表达,其表达在血管损伤或其他导致VSMC增殖的情况下会下调。先前的研究表明,Gax可能通过上调细胞周期蛋白依赖性激酶(cdk)抑制剂p21来调节VSMC增殖。在此,我们研究了Gax是否影响VSMC迁移,这是球囊损伤后狭窄病变发展中的一个关键特征。转导Gax cDNA可抑制VSMC对血小板衍生生长因子-BB、碱性成纤维细胞生长因子或肝细胞生长因子/分散因子的迁移反应。Gax表达也抑制了NIH.3T3成纤维细胞和缺乏p53的胚胎成纤维细胞的迁移。Gax无法抑制缺乏p21的成纤维细胞的迁移,但通过提供外源性p21或过表达另一种cdk抑制剂p16,可在这些细胞中恢复这种作用。流式细胞术分析表明,Gax介导的VSMC中α(v)β(3)和α(v)β(5)整合素表达下调是细胞运动性降低的一个潜在原因。Gax在培养的VSMC中和体内急性血管损伤后特异性下调β(3)和β(5)。在NIH 3T3细胞和p53基因敲除的成纤维细胞中也发现了整合素表达的抑制,但在p21基因敲除的成纤维细胞中未发现,除非这些细胞表达外源性p21或p16。这些数据表明,同源框基因产物Gax可在VSMC中调节细胞周期进程、整合素表达和细胞迁移。