Kakuda H, Sato T, Hayashi Y, Enomoto Y, Takayama J, Ohira M, Seto M, Ueda R, Fuse A, Niimi H
Department of Paediatrics, School of Medicine, Chiba University, Japan.
Br J Haematol. 1996 Nov;95(2):306-18. doi: 10.1046/j.1365-2141.1996.d01-1909.x.
A novel human leukaemic cell line, designated CTS, was established from the peripheral blood of a 13-year-old girl suffering from acute myeloblastic leukaemia (AML) in relapse. CTS cells expressed CD7, CD13, CD33, CD34 and HLA-DR antigens, and showed ultrastructural myeloperoxidase activity. In addition, CTS cells showed DNA rearrangements of the immunoglobulin heavy chain gene and the light kappa chain gene, and deletions of the T-cell receptor delta 1 gene. Cytogenetic analysis revealed a human female diploid karyotype with a t(6;11)(q27;q23) chromosomal translocation. Molecular studies demonstrated a DNA rearrangement of the MLL gene, the expression of a truncated 11.0 kb MLL mRNA and the detection of the MLL/AF-6 fusion transcript in CTS cells. To our knowledge, this cell line is the first report of a human leukaemic cell line with a t(6;11) chromosomal translocation. CTS cells showed no significant proliferative response to the cytokines, IL-2, IL-3, IL-6, IL-11, GM-CSF, G-CSF, EPO, SCF, but were induced to differentiate to the T-cell, B-cell, erythroid or megakaryocytic lineage in the presence of particular cytokines. This CTS cell line may provide a useful tool in the study of the oncogenesis of mixed lineage leukaemia with 11q23 abnormalities and for the analysis of growth and differentiation of pluripotent stem cells.
一种名为CTS的新型人类白血病细胞系,是从一名复发的急性髓细胞白血病(AML)13岁女孩的外周血中建立的。CTS细胞表达CD7、CD13、CD33、CD34和HLA - DR抗原,并显示出超微结构的髓过氧化物酶活性。此外,CTS细胞显示免疫球蛋白重链基因和轻链κ基因的DNA重排,以及T细胞受体δ1基因的缺失。细胞遗传学分析显示为具有t(6;11)(q27;q23)染色体易位的人类女性二倍体核型。分子研究表明CTS细胞中MLL基因发生DNA重排,有截短的11.0 kb MLL mRNA表达,并检测到MLL/AF - 6融合转录本。据我们所知,该细胞系是首例报道的具有t(6;11)染色体易位的人类白血病细胞系。CTS细胞对细胞因子IL - 2、IL - 3、IL - 6、IL - 11、GM - CSF、G - CSF、EPO、SCF无明显增殖反应,但在特定细胞因子存在下可被诱导分化为T细胞、B细胞、红系或巨核细胞系。这个CTS细胞系可能为研究伴有11q23异常的混合谱系白血病的肿瘤发生以及分析多能干细胞的生长和分化提供有用的工具。