Zhou Yan, Li Yue-Sheng, Bandi Srinivasa Rao, Tang Lingjuan, Shinton Susan A, Hayakawa Kyoko, Hardy Richard R
Fox Chase Cancer Center, Philadelphia, PA 19111.
Fox Chase Cancer Center, Philadelphia, PA 19111
J Exp Med. 2015 Apr 6;212(4):569-80. doi: 10.1084/jem.20141510. Epub 2015 Mar 9.
Mouse B cell precursors from fetal liver and adult bone marrow (BM) generate distinctive B cell progeny when transplanted into immunodeficient recipients, supporting a two-pathway model for B lymphopoiesis, fetal "B-1" and adult "B-2." Recently, Lin28b was shown to be important for the switch between fetal and adult pathways; however, neither the mechanism of Lin28b action nor the importance of B cell antigen receptor (BCR) signaling in this process was addressed. Here, we report key advances in our understanding of the regulation of B-1/B-2 development. First, modulation of Let-7 in fetal pro-B cells is sufficient to alter fetal B-1 development to produce B cells resembling the progeny of adult B-2 development. Second, intact BCR signaling is required for the generation of B1a B cells from Lin28b-transduced BM progenitors, supporting a requirement for ligand-dependent selection, as is the case for normal B1a B cells. Third, the VH repertoire of Lin28b-induced BM B1a B cells differs from that of normal B1a, suggesting persisting differences from fetal progenitors. Finally, we identify the Arid3a transcription factor as a key target of Let-7, whose ectopic expression is sufficient to induce B-1 development in adult pro-B cells and whose silencing by knockdown blocks B-1 development in fetal pro-B cells.
来自胎肝和成年骨髓(BM)的小鼠B细胞前体在移植到免疫缺陷受体中时会产生独特的B细胞后代,这支持了B淋巴细胞生成的双途径模型,即胎儿“B-1”途径和成年“B-2”途径。最近,Lin28b被证明在胎儿和成年途径之间的转换中起重要作用;然而,Lin28b的作用机制以及B细胞抗原受体(BCR)信号在此过程中的重要性均未得到探讨。在此,我们报告了在理解B-1/B-2发育调控方面取得的关键进展。首先,在胎儿前B细胞中调节Let-7足以改变胎儿B-1发育,从而产生类似于成年B-2发育后代的B细胞。其次,完整的BCR信号是从Lin28b转导的BM祖细胞生成B1a B细胞所必需的,这支持了对配体依赖性选择的需求,正常B1a B细胞的情况也是如此。第三,Lin28b诱导的BM B1a B细胞的VH库与正常B1a不同,表明与胎儿祖细胞存在持续差异。最后,我们确定Arid3a转录因子是Let-7的关键靶点,其异位表达足以在成年前B细胞中诱导B-1发育,而通过敲低使其沉默则会阻断胎儿前B细胞中的B-1发育。