Kryszke M H, Vicart P
Laboratoire de Biologie Moléculaire de la Différenciation, Université Paris VII Institut Pasteur, France.
Pathol Biol (Paris). 1998 Jan;46(1):39-45.
Vimentin is an intermediate filament protein mainly specific of the mesoderm in vivo. In vitro vimentin synthesis is characteristic of proliferating cells, regardless of their embryonal origin, and is switched off upon differentiation of certain precursor cells. Vimentin gene expression is upregulated in some metastatic tumour cells, appearing as a marker of oncogenic progression. The vimentin network has been suggested to participate in several steps of viral infections. The promoter of the vimentin gene is comprised of multiple elements responsible for its complex transcriptional regulation. Among them, an NF-kappa B- and two AP1-binding sites mediate growth factor responsiveness. Two negative elements are present, one of which is deregulated by the HTLV-1 activator protein Tax. Transcription factor PEA3, encoded by a member of the ets oncogene family, activates the vimentin promoter in mammary tumour cells. In vitro, 878 base pairs of the vimentin 5'-regulatory region are sufficient to give high levels of transcription. These sequences were coupled to the SV40 large T antigen-encoding gene to achieve immortalization of new cell lines, either by transfection of primary cultures, or by derivation of cell explants from transgenic mice expressing the vimentin-SV40 construct. This allowed us, for instance, to immortalize endothelial, myogenic or renal epithelial cells, otherwise difficult to maintain in culture without loss of their differentiated phenotypes.
波形蛋白是一种中间丝蛋白,在体内主要特异性表达于中胚层。在体外,波形蛋白的合成是增殖细胞的特征,无论其胚胎起源如何,并且在某些前体细胞分化时会关闭。波形蛋白基因表达在一些转移性肿瘤细胞中上调,表现为致癌进展的标志物。波形蛋白网络被认为参与病毒感染的多个步骤。波形蛋白基因的启动子由负责其复杂转录调控的多个元件组成。其中,一个核因子κB结合位点和两个激活蛋白1结合位点介导生长因子反应性。存在两个负调控元件,其中一个被人嗜T淋巴细胞病毒1型激活蛋白Tax解除调控。由ets癌基因家族成员编码的转录因子PEA3在乳腺肿瘤细胞中激活波形蛋白启动子。在体外,波形蛋白5′调控区的878个碱基对足以实现高水平转录。这些序列与编码SV40大T抗原的基因相连,通过转染原代培养物或从表达波形蛋白-SV40构建体的转基因小鼠中获取细胞外植体,实现新细胞系的永生化。例如,这使我们能够使内皮细胞、成肌细胞或肾上皮细胞永生化,否则在培养中很难维持而不丧失其分化表型。