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黏连蛋白依赖性对Runx基因的调控。

Cohesin-dependent regulation of Runx genes.

作者信息

Horsfield Julia A, Anagnostou Sasha H, Hu Jimmy Kuang-Hsien, Cho Kitty Hsiao Yu, Geisler Robert, Lieschke Graham, Crosier Kathryn E, Crosier Philip S

机构信息

Department of Molecular Medicine and Pathology, School of Medical Sciences, The University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

Development. 2007 Jul;134(14):2639-49. doi: 10.1242/dev.002485. Epub 2007 Jun 13.

DOI:10.1242/dev.002485
PMID:17567667
Abstract

Runx transcription factors determine cell fate in many lineages. Maintaining balanced levels of Runx proteins is crucial, as deregulated expression leads to cancers and developmental disorders. We conducted a forward genetic screen in zebrafish for positive regulators of runx1 that yielded the cohesin subunit rad21. Zebrafish embryos lacking Rad21, or cohesin subunit Smc3, fail to express runx3 and lose hematopoietic runx1 expression in early embryonic development. Failure to develop differentiated blood cells in rad21 mutants is partially rescued by microinjection of runx1 mRNA. Significantly, monoallelic loss of rad21 caused a reduction in the transcription of runx1 and of the proneural genes ascl1a and ascl1b, indicating that downstream genes are sensitive to Rad21 dose. Changes in gene expression were observed in a reduced cohesin background in which cell division was able to proceed, indicating that cohesin might have a function in transcription that is separable from its mitotic role. Cohesin is a protein complex essential for sister chromatid cohesion and DNA repair that also appears to be essential for normal development through as yet unknown mechanisms. Our findings provide evidence for a novel role for cohesin in development, and indicate potential for monoallelic loss of cohesin subunits to alter gene expression.

摘要

Runx转录因子决定了许多细胞谱系中的细胞命运。维持Runx蛋白的平衡水平至关重要,因为表达失调会导致癌症和发育障碍。我们在斑马鱼中进行了一项正向遗传筛选,以寻找runx1的正向调节因子,结果得到了黏连蛋白亚基rad21。缺乏Rad21或黏连蛋白亚基Smc3的斑马鱼胚胎在早期胚胎发育过程中无法表达runx3,并失去造血runx1的表达。通过显微注射runx1 mRNA可部分挽救rad21突变体中分化血细胞发育的失败。值得注意的是,rad21的单等位基因缺失导致runx1以及神经前体基因ascl1a和ascl1b的转录减少,这表明下游基因对Rad21剂量敏感。在细胞分裂能够进行的黏连蛋白背景降低的情况下观察到了基因表达的变化,这表明黏连蛋白可能在转录中具有与其有丝分裂作用可分离的功能。黏连蛋白是一种对姐妹染色单体黏连和DNA修复至关重要的蛋白质复合物,它似乎也通过尚未知的机制对正常发育至关重要。我们的发现为黏连蛋白在发育中的新作用提供了证据,并表明黏连蛋白亚基的单等位基因缺失有可能改变基因表达。

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