...
【24h】

A monoallelic-to-biallelic T-cell transcriptional switch regulates GATA3 abundance

机译:单等位基因至双等位基因T细胞转录开关调节GATA3的丰度

获取原文
获取原文并翻译 | 示例
           

摘要

Protein abundance must be precisely regulated throughout life, and nowhere is the stringency of this requirement more evident than during T-cell development: A twofold increase in the abundance of transcription factor GATA3 results in thymic lymphoma, while reduced GATA3 leads to diminished T-cell production. GATA3 haploin-sufficiency also causes human HDR (hypoparathyroidism, deafness, and renal dysplasia) syndrome, often accompanied by immunodeficiency. Here we show that loss of one Gata3 allele leads to diminished expansion (and compromised development) of immature T cells as well as aberrant induction of myeloid transcription factor PU.1. This effect is at least in part mediated transcriptionally: We discovered that Gata3 is monoallelically expressed in a parent of origin-independent manner in hematopoietic stem cells and early T-cell progenitors. Curiously, half of the developing cells switch to biallelic Gata3 transcription abruptly at midthymopoiesis. We show that the monoallelic-to-biallelic transcriptional switch is stably maintained and therefore is not a stochastic phenomenon. This unique mechanism, if adopted by other regulatory genes, may provide new biological insights into the rather prevalent phenomenon of monoallelic expression of autosomal genes as well as into the variably penetrant pathophysiological spectrum of phenotypes observed in many human syndromes that are due to haploinsufficiency of the affected gene.
机译:必须在整个生命中精确调节蛋白质的丰度,而且在T细胞发育过程中,对蛋白质的严格要求无处可比:转录因子GATA3丰度的两倍增加会导致胸腺淋巴瘤,而GATA3的减少会导致T细胞的减少。生产。 GATA3单倍蛋白充足还导致人类HDR(甲状旁腺功能低下,耳聋和肾发育不良)综合征,通常伴有免疫缺陷。在这里,我们显示一个Gata3等位基因的缺失会导致未成熟T细胞的扩增减少(和发育受损),以及髓样转录因子PU.1的异常诱导。这种作用至少部分地是通过转录介导的:我们发现Gata3在造血干细胞和早期T细胞祖细胞中以非依赖于母体的方式单等位表达。奇怪的是,一半的发育中的细胞在胸腺生成过程中突然转变为双等位基因Gata3转录。我们表明,单等位基因到双等位基因的转录开关是稳定保持的,因此不是随机现象。这种独特的机制,如果被其他调节基因采用,则可能为常染色体常等基因单等位基因表达的普遍现象以及由于人类单倍体功能不全而在许多人类综合征中观察到的表型的不同渗透病理生理谱提供新的生物学见解。受影响的基因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号