首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Transcription factor Bcl11b sustains iNKT1 and iNKT2 cell programs restricts iNKT17 cell program and governs iNKT cell survival
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Transcription factor Bcl11b sustains iNKT1 and iNKT2 cell programs restricts iNKT17 cell program and governs iNKT cell survival

机译:转录因子Bcl11b维持iNKT1和iNKT2细胞程序限制iNKT17细胞程序并控制iNKT细胞存活

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摘要

Invariant natural killer T (iNKT) cells are innate-like T cells that recognize glycolipid antigens and play critical roles in regulation of immune responses. Based on expression of the transcription factors (TFs) Tbet, Plzf, and Rorγt, iNKT cells have been classified in effector subsets that emerge in the thymus, namely, iNKT1, iNKT2, and iNKT17. Deficiency in the TF Bcl11b in double-positive (DP) thymocytes has been shown to cause absence of iNKT cells in the thymus and periphery due to defective self glycolipid processing and presentation by DP thymocytes and undefined intrinsic alterations in iNKT precursors. We used a model of cre-mediated postselection deletion of Bcl11b in iNKT cells to determine its intrinsic role in these cells. We found that Bcl11b is expressed equivalently in all three effector iNKT subsets, and its removal caused a reduction in the numbers of iNKT1 and iNKT2 cells, but not in the numbers of iNKT17 cells. Additionally, we show that Bcl11b sustains subset-specific cytokine production by iNKT1 and iNKT2 cells and restricts expression of iNKT17 genes in iNKT1 and iNKT2 subsets, overall restraining the iNKT17 program in iNKT cells. The total numbers of iNKT cells were reduced in the absence of Bcl11b both in the thymus and periphery, associated with the decrease in iNKT1 and iNKT2 cell numbers and decrease in survival, related to changes in survival/apoptosis genes. Thus, these results extend our understanding of the role of Bcl11b in iNKT cells beyond their selection and demonstrate that Bcl11b is a key regulator of iNKT effector subsets, their function, identity, and survival.
机译:不变的自然杀伤性T细胞(iNKT)是先天性的T细胞,可识别糖脂抗原并在调节免疫应答中起关键作用。基于转录因子(TFs)Tbet,Plzf和Rorγt的表达,已将iNKT细胞归类为在胸腺中出现的效应子集,即iNKT1,iNKT2和iNKT17。 TF Bcl11b在双阳性(DP)胸腺细胞中的缺乏已被证明可导致胸腺和外周缺乏iNKT细胞,这是由于DP胸腺细胞自身糖脂加工和呈递缺陷以及iNKT前体的不确定内在改变所致。我们在iNKT细胞中使用cre介导的Bcl11b的选择后缺失删除模型,以确定其在这些细胞中的内在作用。我们发现,Bcl11b在所有三个效应子iNKT亚组中均等价表达,其去除引起iNKT1和iNKT2细胞数量的减少,而不是iNKT17细胞数量的减少。此外,我们显示Bcl11b维持由iNKT1和iNKT2细胞产生的子集特异性细胞因子,并限制iNKT1和iNKT2子集中的iNKT17基因表达,从而总体上限制了iNKT细胞中的iNKT17程序。在胸腺和外周都没有Bcl11b的情况下,iNKT细胞总数减少,这与iNKT1和iNKT2细胞数目的减少以及存活率降低有关,这与存活/凋亡基因的变化有关。因此,这些结果扩展了我们对Bcl11b在iNKT细胞中作用的理解,超出了它们的选择范围,并证明Bcl11b是iNKT效应子集,其功能,特性和存活的关键调节剂。

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