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人源KHNYN的NYN结构域与单链RNA复合物的晶体结构

Crystal structure of NYN domain of Human KHNYN in complex with single strand RNA.

作者信息

Hong Sunho, Choe Jungwoo

机构信息

Department of Life Science, University of Seoul, Seoul, 02504, Republic of Korea.

Department of Life Science, University of Seoul, Seoul, 02504, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2024 Dec 17;738:150545. doi: 10.1016/j.bbrc.2024.150545. Epub 2024 Aug 13.

Abstract

KHNYN protein with a KH-like domain and a NYN endoribonuclease domain interacts with Zinc-finger antiviral protein (ZAP). ZAP isoforms recognize viral or cellular RNAs and recruit KHNYN to form the ZAP: KHNYN complex. Although the structures of several PIN/NYN domains have been determined, the precise substrate RNA binding mode remains poorly understood. This study presents the crystal structure of a complex of the NYN domain of KHNYN and a 7mer RNA from interferon lambda3 (IFNL3). Our structural analysis reveals that NYN domain of human KHNYN shares structural similarities with other NYN domains of ZC3H12àC proteins. The RNA is bound in the central groove region of the protein, facilitated by interactions including coordination by two Mg ions, hydrophobic interactions, and hydrogen bonds. In the observed RNA-protein complex, the U, A, and U bases are stacked on top of one another, while U and U bases adopt an "open" conformation (as opposed to base-stacked), forming a U-shaped overall structure. Mutagenesis studies underscore the significance of residues involved in RNA binding for RNase activity. Interestingly, NYN domain of human KHNYN forms a head-to-tail dimer in the crystal, a structural feature also observed in other homologous PIN/NYN proteins, with a residue from the symmetry mate contributing to hydrophobic interactions with the bound RNA.

摘要

具有类KH结构域和NYN核糖核酸内切酶结构域的KHNYN蛋白与锌指抗病毒蛋白(ZAP)相互作用。ZAP异构体识别病毒或细胞RNA,并招募KHNYN形成ZAP:KHNYN复合物。尽管已经确定了几种PIN/NYN结构域的结构,但精确的底物RNA结合模式仍知之甚少。本研究展示了KHNYN的NYN结构域与干扰素λ3(IFNL3)的7聚体RNA复合物的晶体结构。我们的结构分析表明,人KHNYN的NYN结构域与ZC3H12A C蛋白的其他NYN结构域具有结构相似性。RNA结合在蛋白质的中央凹槽区域,通过包括两个镁离子配位、疏水相互作用和氢键在内的相互作用得以促进。在观察到的RNA - 蛋白质复合物中,U、A和U碱基彼此堆叠,而U和U碱基呈现“开放”构象(与碱基堆叠相反),形成整体的U形结构。诱变研究强调了参与RNA结合的残基对核糖核酸酶活性的重要性。有趣的是,人KHNYN的NYN结构域在晶体中形成头对头二聚体,这也是在其他同源PIN/NYN蛋白中观察到的结构特征,来自对称配偶体的一个残基有助于与结合的RNA形成疏水相互作用。

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