Ha V L, Luong A, Li F, Casero D, Malvar J, Kim Y M, Bhatia R, Crooks G M, Parekh C
Children's Center for Cancer and Blood Disease, Children's Hospital Los Angeles, Los Angeles, CA, USA.
MiNGS Core Laboratory, Children's Hospital Los Angeles, Los Angeles, CA, USA.
Leukemia. 2017 Nov;31(11):2503-2514. doi: 10.1038/leu.2017.70. Epub 2017 Feb 24.
The initial stages of T-cell differentiation are characterized by a progressive commitment to the T-cell lineage, a process that involves the loss of alternative (myelo-erythroid, NK, B) lineage potentials. Aberrant differentiation during these stages can result in T-cell acute lymphoblastic leukemia (T-ALL). However, the mechanisms regulating the initial stages of human T-cell differentiation are obscure. Through loss of function studies, we showed BCL11B, a transcription factor recurrently mutated T-ALL, is essential for T-lineage commitment, particularly the repression of NK and myeloid potentials, and the induction of T-lineage genes, during the initial stages of human T-cell differentiation. In gain of function studies, BCL11B inhibited growth of and induced a T-lineage transcriptional program in T-ALL cells. We found previously unknown differentiation stage-specific DNA binding of BCL11B at multiple T-lineage genes; target genes showed BCL11B-dependent expression, suggesting a transcriptional activator role for BCL11B at these genes. Transcriptional analyses revealed differences in the regulatory actions of BCL11B between human and murine thymopoiesis. Our studies show BCL11B is a key regulator of the initial stages of human T-cell differentiation and delineate the BCL11B transcriptional program, enabling the dissection of the underpinnings of normal T-cell differentiation and providing a resource for understanding dysregulations in T-ALL.
T细胞分化的初始阶段的特征是逐渐定向于T细胞谱系,这一过程涉及丧失替代(髓系-红系、自然杀伤细胞、B细胞)谱系潜能。这些阶段的异常分化可导致T细胞急性淋巴细胞白血病(T-ALL)。然而,调节人类T细胞分化初始阶段的机制尚不清楚。通过功能丧失研究,我们发现BCL11B,一种在T-ALL中反复发生突变的转录因子,在人类T细胞分化的初始阶段对于T谱系定向至关重要,特别是对于抑制自然杀伤细胞和髓系潜能以及诱导T谱系基因而言。在功能获得研究中,BCL11B抑制T-ALL细胞的生长并诱导其T谱系转录程序。我们发现BCL11B在多个T谱系基因处存在以前未知的分化阶段特异性DNA结合;靶基因显示出依赖BCL11B的表达,这表明BCL11B在这些基因处具有转录激活剂作用。转录分析揭示了BCL11B在人类和小鼠胸腺生成中的调节作用存在差异。我们的研究表明BCL11B是人类T细胞分化初始阶段的关键调节因子,并描绘了BCL11B转录程序,从而能够剖析正常T细胞分化的基础,并为理解T-ALL中的失调提供资源。