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Notch3及Notch3上调的RNA结合蛋白HuD调节Ikaros的可变剪接。

Notch3 and the Notch3-upregulated RNA-binding protein HuD regulate Ikaros alternative splicing.

作者信息

Bellavia Diana, Mecarozzi Marco, Campese Antonio F, Grazioli Paola, Talora Claudio, Frati Luigi, Gulino Alberto, Screpanti Isabella

机构信息

Department of Experimental Medicine, University 'La Sapienza', Roma, Italy.

出版信息

EMBO J. 2007 Mar 21;26(6):1670-80. doi: 10.1038/sj.emboj.7601626. Epub 2007 Mar 1.

Abstract

Constitutive activation of the transmembrane receptor, Notch3, and loss of function of the hematopoietic transcription repressor, Ikaros (IK), play direct roles in T-cell differentiation and leukemogenesis that are dependent on pre-T-cell receptor (pre-TCR) signaling. We demonstrate the occurrence of crosstalk between Notch3 and IK that results in transcriptional regulation of the gene encoding the pTalpha chain of the pre-TCR. We also show that, in the presence of the pre-TCR, constitutive activation of Notch3 in thymocytes causes increased expression of dominantnegative non-DNA-binding IK isoforms, which are able to restrain the IK inhibition of Notch3's transcriptional activation of pTalpha. This effect appears to be mediated by Notch3's pre-TCR-dependent upregulation of the RNA-binding protein, HuD. Notch3 signaling thus appears to play a critical role in the diminished IK activity described in several lymphoid leukemias. By exerting transcription-activating and transcription-repressing effects on the pTalpha promoter, Notch3 and IK cooperate in the fine-tuning of pre-TCR expression and function, which has important implications for the regulation of thymocyte differentiation and proliferation.

摘要

跨膜受体Notch3的组成性激活以及造血转录抑制因子Ikaros(IK)的功能丧失,在依赖前T细胞受体(pre-TCR)信号传导的T细胞分化和白血病发生中起直接作用。我们证明了Notch3与IK之间存在串扰,这导致了对pre-TCR的pTα链编码基因的转录调控。我们还表明,在存在pre-TCR的情况下,胸腺细胞中Notch3的组成性激活会导致显性负性非DNA结合IK亚型的表达增加,这些亚型能够抑制IK对Notch3的pTα转录激活的抑制作用。这种效应似乎是由Notch3对RNA结合蛋白HuD的pre-TCR依赖性上调介导的。因此,Notch3信号传导似乎在几种淋巴细胞白血病中描述的IK活性降低中起关键作用。通过对pTα启动子发挥转录激活和转录抑制作用,Notch3和IK在pre-TCR表达和功能的微调中协同作用,这对胸腺细胞分化和增殖的调节具有重要意义。

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