两个Runx1同工型中唯一的n端序列对于Runx1函数是不可缺少的。

Q2 Biochemistry, Genetics and Molecular Biology
Sebastian Nieke, Nighat Yasmin, Kiyokazu Kakugawa, Tomomasa Yokomizo, Sawako Muroi, Ichiro Taniuchi
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引用次数: 9

摘要

背景:runt相关转录因子(Runx)是一个进化保守的转录调节因子家族,在各种细胞类型的发育控制中发挥多种作用。在三种哺乳动物Runx蛋白中,Runx1是决定性造血所必需的,其功能障碍导致人类白血病的发生。Runx1基因有两个启动子,远端(P1)和近端(P2),它们产生两个具有不同n端氨基酸序列的Runx1亚型P1-Runx1和P2-Runx1。然而,P2-Runx特异性n端序列是否对Runx1蛋白具有特异性功能尚不清楚。结果:为了研究P2-Runx1亚型的功能,我们建立了新的突变小鼠模型,其中P2-Runx1亚型的翻译起始AUG(+1)密码子被调节。我们发现截断的P2-Runx1异构体是从下游的非规范AUG密码子翻译过来的。重要的是,截断的P2-Runx1亚型足以支持初级造血,即使在缺乏P1-Runx1亚型的情况下。此外,截断的P2-Runx1亚型能够恢复因P1-Runx1亚型缺失而导致的嗜碱性细胞发育缺陷。截断的P2-Runx1亚型比典型的P2-Runx1亚型更稳定。结论:我们的研究结果表明,P2-Runx1特异性的n端序列对于Runx1的功能是必不可少的,并且可能作为调节Runx1产生的非稳定化模块。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unique N-terminal sequences in two Runx1 isoforms are dispensable for Runx1 function.

Unique N-terminal sequences in two Runx1 isoforms are dispensable for Runx1 function.

Unique N-terminal sequences in two Runx1 isoforms are dispensable for Runx1 function.

Unique N-terminal sequences in two Runx1 isoforms are dispensable for Runx1 function.

Background: The Runt-related transcription factors (Runx) are a family of evolutionarily conserved transcriptional regulators that play multiple roles in the developmental control of various cell types. Among the three mammalian Runx proteins, Runx1 is essential for definitive hematopoiesis and its dysfunction leads to human leukemogenesis. There are two promoters, distal (P1) and proximal (P2), in the Runx1 gene, which produce two Runx1 isoforms with distinct N-terminal amino acid sequences, P1-Runx1 and P2-Runx1. However, it remains unclear whether P2-Runx specific N-terminal sequence have any specific function for Runx1 protein.

Results: To address the function of the P2-Runx1 isoform, we established novel mutant mouse models in which the translational initiation AUG (+1) codon for P2-Runx1 isoform was modulated. We found that a truncated P2-Runx1 isoform is translated from a downstream non-canonical AUG codon. Importantly, the truncated P2-Runx1 isoform is sufficient to support primary hematopoiesis, even in the absence of the P1-Runx1 isoform. Furthermore, the truncated P2-Runx1 isoform was able to restore defect in basophil development caused by loss of the P1-Runx1 isoform. The truncated P2-Runx1 isoform was more stable than the canonical P2-Runx1 isoform.

Conclusions: Our results demonstrate that the N-terminal sequences specific for P2-Runx1 are dispensable for Runx1 function, and likely serve as a de-stabilization module to regulate Runx1 production.

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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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