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IRF4/DNA 同源二聚体复合物的结构决定因素。

Structural determinants of the IRF4/DNA homodimeric complex.

机构信息

Eccles Institute of Neuroscience, John Curtin School of Medical Research, Australian National University, Canberra 2600, Australia.

Research School of Biology, Australian National University, Canberra 2600, Australia.

出版信息

Nucleic Acids Res. 2021 Feb 26;49(4):2255-2265. doi: 10.1093/nar/gkaa1287.

Abstract

Interferon regulatory factor 4 (IRF4) is a key transcription factor (TF) in the regulation of immune cells, including B and T cells. It acts by binding DNA as both a homodimer and, in conjunction with other TFs, as a heterodimer. The choice of homo and heterodimeric/ DNA interactions is a critical aspect in the control of the transcriptional program and cell fate outcome. To characterize the nature of this interaction in the homodimeric complex, we have determined the crystal structure of the IRF4/ISRE homodimeric complex. We show that the complex formation is aided by a substantial DNA deformation with co-operative binding achieved exclusively through protein-DNA contact. This markedly contrasts with the heterodimeric form where DNA bound IRF4 is shown to physically interact with PU.1 TF to engage EICE1. We also show that the hotspot residues (Arg98, Cys99 and Asn102) contact both consensus and non-consensus sequences with the L1 loop exhibiting marked flexibility. Additionally, we identified that IRF4L116R, a mutant associated with chronic lymphocytic leukemia, binds more robustly to DNA thereby providing a rationale for the observed gain of function. Together, we demonstrate key structural differences between IRF4 homo and heterodimeric complexes, thereby providing molecular insights into IRF4-mediated transcriptional regulation.

摘要

干扰素调节因子 4(IRF4)是调节免疫细胞(包括 B 和 T 细胞)的关键转录因子(TF)。它通过作为同源二聚体结合 DNA 起作用,并且与其他 TF 一起作为异源二聚体起作用。同二聚体和异二聚体/ DNA 相互作用的选择是控制转录程序和细胞命运结果的关键方面。为了表征同源二聚体复合物中这种相互作用的性质,我们已经确定了 IRF4/ISRE 同源二聚体复合物的晶体结构。我们表明,复合物的形成得益于大量的 DNA 变形,通过仅通过蛋白-DNA 接触实现协同结合。这与异源二聚体形式形成鲜明对比,其中结合 DNA 的 IRF4 被显示与 PU.1 TF 物理相互作用以参与 EICE1。我们还表明,热点残基(Arg98、Cys99 和 Asn102)与共识和非共识序列接触,L1 环表现出明显的灵活性。此外,我们确定与慢性淋巴细胞白血病相关的突变体 IRF4L116R 更牢固地结合 DNA,从而为观察到的功能获得提供了依据。总之,我们证明了 IRF4 同源和异源二聚体复合物之间的关键结构差异,从而为 IRF4 介导的转录调节提供了分子见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9785/7913761/ddbc485197dd/gkaa1287fig1.jpg

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