Department of Radiation Life Sciences, Fukushima Medical University School of Medicine, Fukushima, Japan.
Department of Genetics, National Research Institute for Child Health and Development, Tokyo, Japan.
Sci Rep. 2017 May 10;7(1):1659. doi: 10.1038/s41598-017-01627-1.
B cell derived induced pluripotent stem cells (BiPSCs) were recently established from peripheral blood B cells by the simultaneous transfection of Yamanaka factors (Oct3/4, Sox2, Klf4, c-Myc) and C/EBPα using a Sendai virus vector. Here, using a different method, we established BiPSCs with immunoglobulin heavy chain (IgH) gene rearrangement from normal B cells purified from lymph nodes. The critical points of our method are pre-stimulation of B cells with IL-21 and CD40-ligand (CD40L), followed by consecutive transfection of highly concentrated Yamanaka factors using a retroviral vector. Following each transfection the cells were centrifuged onto a retronectin coated plate and the activated by IL-4, IL-2, and CD40L. Furthermore, we established BiPSCs (BiPSC-A) in which activation-induced cytidine deaminase (AID) could be induced using the doxycycline-controlled. Both the parental BiPSC and BiPSC-A showed the capability of differentiating into hematopoietic progenitor cells (HPCs) based on confirmation of CD34 expression and colony-formation from CD34-positive cells. The findings that BiPSC-A can differentiate into HPCs suggest that there is a possibility that induction of AID expression would result in chromosomal translocations in the process of differentiation from BiPSCs, and therefore that these BiPSCs could be useful in elucidating the tumor origin of abnormal B cells in myelomagenesis.
B 细胞来源的诱导多能干细胞(BiPSCs)最近通过使用仙台病毒载体同时转染 Yamanaka 因子(Oct3/4、Sox2、Klf4、c-Myc)和 C/EBPα 从外周血 B 细胞中建立。在这里,我们使用不同的方法,从淋巴结中纯化的正常 B 细胞中建立了具有免疫球蛋白重链(IgH)基因重排的 BiPSCs。我们方法的关键点是先用 IL-21 和 CD40 配体(CD40L)预刺激 B 细胞,然后用逆转录病毒载体连续转染高浓度的 Yamanaka 因子。每次转染后,将细胞离心到 retronectin 包被的平板上,并通过 IL-4、IL-2 和 CD40L 激活。此外,我们使用强力霉素控制的方法建立了可以诱导激活诱导胞嘧啶脱氨酶(AID)的 BiPSCs(BiPSC-A)。亲本 BiPSC 和 BiPSC-A 均显示出基于 CD34 表达的鉴定和 CD34 阳性细胞的集落形成能力分化为造血祖细胞(HPCs)。BiPSC-A 可以分化为 HPCs 的发现表明,在从 BiPSCs 分化的过程中诱导 AID 表达可能导致染色体易位,因此这些 BiPSCs 可能有助于阐明骨髓瘤发生中异常 B 细胞的肿瘤起源。