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先天性心脏病相关因子GATA4和NKX2-5的核受体样结构及相互作用

Nuclear Receptor-Like Structure and Interaction of Congenital Heart Disease-Associated Factors GATA4 and NKX2-5.

作者信息

Kinnunen Sini, Välimäki Mika, Tölli Marja, Wohlfahrt Gerd, Darwich Rami, Komati Hiba, Nemer Mona, Ruskoaho Heikki

机构信息

Division of Pharmacology and Pharmacotherapy, University of Helsinki, Helsinki, Finland.

Institute of Biomedicine, Department of Pharmacology and Toxicology, University of Oulu, Oulu, Finland.

出版信息

PLoS One. 2015 Dec 7;10(12):e0144145. doi: 10.1371/journal.pone.0144145. eCollection 2015.

Abstract

AIMS

Transcription factor GATA4 is a dosage sensitive regulator of heart development and alterations in its level or activity lead to congenital heart disease (CHD). GATA4 has also been implicated in cardiac regeneration and repair. GATA4 action involves combinatorial interaction with other cofactors such as NKX2-5, another critical cardiac regulator whose mutations also cause CHD. Despite its critical importance to the heart and its evolutionary conservation across species, the structural basis of the GATA4-NKX2-5 interaction remains incompletely understood.

METHODS AND RESULTS

A homology model was constructed and used to identify surface amino acids important for the interaction of GATA4 and NKX2-5. These residues were subjected to site-directed mutagenesis, and the mutant proteins were characterized for their ability to bind DNA and to physically and functionally interact with NKX2-5. The studies identify 5 highly conserved amino acids in the second zinc finger (N272, R283, Q274, K299) and its C-terminal extension (R319) that are critical for physical and functional interaction with the third alpha helix of NKX2-5 homeodomain. Integration of the experimental data with computational modeling suggests that the structural arrangement of the zinc finger-homeodomain resembles the architecture of the conserved DNA binding domain of nuclear receptors.

CONCLUSIONS

The results provide novel insight into the structural basis for protein-protein interactions between two important classes of transcription factors. The model proposed will help to elucidate the molecular basis for disease causing mutations in GATA4 and NKX2-5 and may be relevant to other members of the GATA and NK classes of transcription factors.

摘要

目的

转录因子GATA4是心脏发育的剂量敏感调节因子,其水平或活性的改变会导致先天性心脏病(CHD)。GATA4也与心脏再生和修复有关。GATA4的作用涉及与其他辅助因子的组合相互作用,如NKX2-5,另一个关键的心脏调节因子,其突变也会导致CHD。尽管GATA4对心脏至关重要且在物种间具有进化保守性,但其与NKX2-5相互作用的结构基础仍未完全明确。

方法与结果

构建了一个同源模型,用于识别对GATA4和NKX2-5相互作用重要的表面氨基酸。对这些残基进行定点诱变,并对突变蛋白结合DNA以及与NKX2-5进行物理和功能相互作用的能力进行表征。研究确定了第二个锌指(N272、R283、Q274、K299)及其C端延伸(R319)中的5个高度保守的氨基酸,它们对于与NKX2-5同源结构域的第三个α螺旋进行物理和功能相互作用至关重要。将实验数据与计算模型相结合表明,锌指-同源结构域的结构排列类似于核受体保守DNA结合结构域的结构。

结论

这些结果为两类重要转录因子之间蛋白质-蛋白质相互作用的结构基础提供了新的见解。所提出的模型将有助于阐明GATA4和NKX2-5中致病突变的分子基础,并且可能与GATA和NK类转录因子的其他成员相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f43/4671672/e4705a020875/pone.0144145.g001.jpg

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