Molecular, Structural and Computational Biology Division, The Victor Chang Cardiac Research Institute, Sydney, New South Wales 2010, Australia.
School of Clinical Medicine, Faculty of Medicine and Health, UNSW Sydney, New South Wales 2052, Australia.
RNA. 2023 Jun;29(6):724-734. doi: 10.1261/rna.079596.123. Epub 2023 Feb 28.
The GIGYF proteins interact with 4EHP and RNA-associated proteins to elicit transcript-specific translational repression. However, the mechanism by which the GIGYF1/2-4EHP complex is recruited to its target transcripts remain unclear. Here, we report the crystal structures of the GYF domains from GIGYF1 and GIGYF2 in complex with proline-rich sequences from the miRISC-binding proteins TNRC6C and TNRC6A, respectively. The TNRC6 proline-rich motifs bind to a conserved array of aromatic residues on the surface of the GIGYF1/2 GYF domains, thereby bridging 4EHP to Argonaute-miRNA complexes. Our structures also reveal a phenylalanine residue conserved from yeast to human GYF domains that contributes to GIGYF2 thermostability. The molecular details we outline here are likely to be conserved between GIGYF1/2 and other RNA-binding proteins to elicit 4EHP-mediated repression in different biological contexts.
GIGYF 蛋白与 4EHP 和 RNA 相关蛋白相互作用,引发转录特异性翻译抑制。然而,GIGYF1/2-4EHP 复合物被招募到其靶转录本的机制仍不清楚。在这里,我们报告了 GIGYF1 和 GIGYF2 的 GYF 结构域与 miRISC 结合蛋白 TNRC6C 和 TNRC6A 的富含脯氨酸序列分别形成复合物的晶体结构。TNRC6 富含脯氨酸的基序结合到 GIGYF1/2 GYF 结构域表面上保守的一系列芳香族残基上,从而将 4EHP 桥接到 Argonaute-miRNA 复合物上。我们的结构还揭示了从酵母到人 GYF 结构域中保守的苯丙氨酸残基,该残基有助于 GIGYF2 的热稳定性。我们在这里概述的分子细节可能在 GIGYF1/2 和其他 RNA 结合蛋白之间保守,以在不同的生物学背景下引发 4EHP 介导的抑制。