Habara-Ohkubo A
Department of Gene Regulation, Kumamoto University, School of Medicine, Japan.
Cell Struct Funct. 1996 Apr;21(2):101-10. doi: 10.1247/csf.21.101.
A clonal derivative named CL6 has been isolated from pluripotent P19 embryonal carcinoma (EC) cells, after long term culture under conditions for mesodermal differentiation. The CL6 subline has a morphology similar to P19 cells and grows exponentially in standard medium, but unlike P19 cells, it efficiently differentiates into beating cardiac muscle in adherent culture with 1% dimethyl sulfoxide (DMSO). During differentiation, CL6 cells displayed the following general cardiac muscle properties: (1) alpha- and beta-cardiac myosin heavy chain (MHC) transcripts were first detected on day 10 after treatment with DMSO. (2) A sarcomere MHC protein also appeared on day 10, simultaneously with the initiation of contraction. (3) Immunofluorescence analysis showed that vigorously contracting cells have a striated structure. (4) Skeletal muscle specific transcripts, such as myogenin and MyoD, were not detected throughout differentiation. On the other hand, in suspension culture with 1 microM retinoic acid (RA), the condition for neural differentiation of P19 cells, the CL6 cells developed into neurons with poor outgrowth. Taken together, the CL6 subline seems not to be committed to a mesodermal lineage but to represent a developmental stage closer to differentiated cardiac muscle than the P19 cell line. Since CL6 cells directly differentiate into cardiac muscle in adherent culture, it is the most useful cell line for studying the differentiation of cardiac muscle in vitro.
在中胚层分化条件下长期培养后,从多能性P19胚胎癌细胞中分离出了一个名为CL6的克隆衍生物。CL6亚系的形态与P19细胞相似,在标准培养基中呈指数生长,但与P19细胞不同的是,在含有1%二甲基亚砜(DMSO)的贴壁培养中,它能高效分化为跳动的心肌。在分化过程中,CL6细胞表现出以下一般心肌特性:(1)在用DMSO处理后第10天首次检测到α-和β-心肌肌球蛋白重链(MHC)转录本。(2)肌节MHC蛋白也在第10天出现,与收缩开始同时出现。(3)免疫荧光分析表明,剧烈收缩的细胞具有横纹结构。(4)在整个分化过程中未检测到骨骼肌特异性转录本,如肌细胞生成素和MyoD。另一方面,在含有1μM视黄酸(RA)的悬浮培养中,即P19细胞神经分化的条件下,CL6细胞发育为生长不良的神经元。综上所述,CL6亚系似乎未定向于中胚层谱系,而是代表了一个比P19细胞系更接近分化心肌的发育阶段。由于CL6细胞在贴壁培养中可直接分化为心肌,因此它是体外研究心肌分化最有用的细胞系。