Shanahan C M, Weissberg P L, Metcalfe J C
Department of Biochemistry, University of Cambridge, UK.
Circ Res. 1993 Jul;73(1):193-204. doi: 10.1161/01.res.73.1.193.
To isolate specific markers of both differentiated and proliferating vascular smooth muscle cells (VSMCs), we used the technique of differential cDNA screening using RNA from cultured rat aortic VSMCs. The tissue specificity of expression of all of the cDNAs isolated was determined by Northern analysis. We isolated seven distinct cDNAs that were more strongly expressed in freshly dispersed, differentiated, aortic VSMCs compared with dedifferentiated late-passage cells. These were the cDNAs for tropoelastin, a matrix protein; alpha-smooth muscle (SM) actin, gamma-SM actin, calponin, and phospholamban, which are all proteins associated with the contractile function of differentiated VSMCs; SM22 alpha, a smooth muscle-specific protein of unknown function, and CHIP28, a putative membrane channel protein that is not highly expressed in other SM tissues and may therefore be a new VSMC marker. Two cDNAs that were expressed preferentially in late-passage dedifferentiated VSMCs were also isolated. These were the cDNAs for osteopontin and matrix Gla protein (MGP). Like CHIP28, MGP was strongly expressed in aortic VSMCs but not in other types of tissues containing SM cells, suggesting that both have specific functions in vascular tissue. Osteopontin and MGP have both previously been isolated from developing bone. Their expression in proliferating VSMCs suggests that they may be involved in regulating the calcification that commonly occurs in vascular lesions. The set of cDNAs obtained extends the range of DNA probes that are available for identifying VSMCs and characterizing their phenotype in vivo by in situ hybridization. Therefore, they should aid in the analysis of gene expression during the development of vessel lesions.
为了分离分化型和增殖型血管平滑肌细胞(VSMC)的特异性标志物,我们使用了差异cDNA筛选技术,该技术采用来自培养的大鼠主动脉VSMC的RNA。通过Northern分析确定了所有分离出的cDNA表达的组织特异性。我们分离出了7个不同的cDNA,与去分化的晚期传代细胞相比,它们在新鲜分离的、分化的主动脉VSMC中表达更强。这些cDNA分别是原弹性蛋白(一种基质蛋白)、α-平滑肌(SM)肌动蛋白、γ-SM肌动蛋白、钙调蛋白和受磷蛋白的cDNA,它们都是与分化型VSMC收缩功能相关的蛋白质;SM22α,一种功能未知的平滑肌特异性蛋白;以及CHIP28,一种推测的膜通道蛋白,在其他SM组织中表达不高,因此可能是一种新的VSMC标志物。还分离出了两个在晚期传代去分化的VSMC中优先表达的cDNA。它们分别是骨桥蛋白和基质Gla蛋白(MGP)的cDNA。与CHIP28一样,MGP在主动脉VSMC中强烈表达,但在其他类型的含SM细胞的组织中不表达,这表明两者在血管组织中都具有特定功能。骨桥蛋白和MGP以前都从发育中的骨骼中分离得到。它们在增殖型VSMC中的表达表明,它们可能参与调节血管病变中常见的钙化过程。所获得的这组cDNA扩展了可用于通过原位杂交在体内鉴定VSMC并表征其表型的DNA探针范围。因此,它们应该有助于分析血管病变发展过程中的基因表达。