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利用 AlphaFold2 探索 Wnt 信号通路中的 DIX-DIX 同源和异源寡聚体。

Exploring DIX-DIX Homo- and Hetero-Oligomers in Wnt Signaling with AlphaFold2.

机构信息

College of Chemical Engineering, Sichuan University of Science and Engineering, Zigong 64300, China.

Department of Chemistry Education, Daegu University, Daegudae-ro 201, Gyeongsan-si 38453, Gyeongsangbuk-do, Republic of Korea.

出版信息

Cells. 2024 Oct 3;13(19):1646. doi: 10.3390/cells13191646.

Abstract

Wnt signaling is involved in embryo development and cancer. The binding between the DIX domains of Axin1/2, Dishevelled1/2/3, and Coiled-coil-DIX1 is essential for Wnt/β-catenin signaling. Structural and biological studies have revealed that DIX domains are polymerized through head-to-tail interface interactions, which are indispensable for activating β-catenin Wnt signaling. Although different isoforms of Dvl and Axin proteins display both redundant and specific functions in Wnt signaling, the specificity of DIX-mediated interactions remains unclear due to technical challenges. Using AlphaFold2(AF2), we predict the structures of 6 homodimers and 22 heterodimers of DIX domains without templates and compare them with the reported X-ray complex structures. PRODIGY is used to calculate the binding affinities of these DIX complexes. Our results show that the Axin2 DIX homodimer has a stronger binding affinity than the Axin1 DIX homodimer. Among Dishevelled (Dvl) proteins, the binding affinity of the Dvl1 DIX homodimer is stronger than that of Dvl2 and Dvl3. The Coiled-coil-DIX1(Ccd1) DIX homodimer shows weaker binding than the Axin1 DIX homodimer. Generally, heterodimer interactions tend to be stronger than those of homodimers. Our findings provide insights into the mechanism of the Wnt signaling pathway and highlight the potential of AF2 and PRODIGY for studying protein-protein interactions in signaling pathways.

摘要

Wnt 信号通路参与胚胎发育和癌症。Axin1/2、Dishevelled1/2/3 和 Coiled-coil-DIX1 的 DIX 结构域之间的结合对于 Wnt/β-catenin 信号通路至关重要。结构和生物学研究表明,DIX 结构域通过头对头界面相互作用聚合,这对于激活 β-catenin Wnt 信号通路是必不可少的。尽管 Dvl 和 Axin 蛋白的不同同工型在 Wnt 信号通路中表现出冗余和特异性功能,但由于技术挑战,DIX 介导的相互作用的特异性尚不清楚。使用 AlphaFold2(AF2),我们预测了 6 个同源二聚体和 22 个异源二聚体的 DIX 结构域,没有模板,并将它们与报道的 X 射线复合物结构进行比较。PRODIGY 用于计算这些 DIX 复合物的结合亲和力。我们的结果表明,Axin2 DIX 同源二聚体的结合亲和力强于 Axin1 DIX 同源二聚体。在 Dishevelled (Dvl) 蛋白中,Dvl1 DIX 同源二聚体的结合亲和力强于 Dvl2 和 Dvl3。Coiled-coil-DIX1(Ccd1) DIX 同源二聚体的结合亲和力弱于 Axin1 DIX 同源二聚体。一般来说,异源二聚体相互作用往往强于同源二聚体。我们的发现为 Wnt 信号通路的机制提供了深入的了解,并强调了 AF2 和 PRODIGY 在研究信号通路中蛋白质-蛋白质相互作用方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d610/11475284/f4f58f9469e5/cells-13-01646-g001.jpg

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