Full-Atom Protein Pocket Design via Iterative Refinement
Zaixi Zhang, Zepu Lu, Zhongkai Hao, Marinka Zitnik, Qi Liu
摘要
The design of de novo functional proteins that bind specific ligand molecules is paramount in therapeutics and bio-engineering. A critical yet formidable task in this endeavor is the design of the protein pocket, which is the cavity region of the protein where the ligand binds. Current methods are plagued by inefficient generation, inadequate context modeling of the ligand molecule, and the inability to generate side-chain atoms. Here, we present the Full-Atom Iterative Refinement (FAIR) method, designed to address these challenges by facilitating the co-design of protein pocket sequences, specifically residue types, and their corresponding 3D structures. FAIR operates in two steps, proceeding in a coarse-to-fine manner (transitioning from protein backbone to atoms, including side chains) for a full-atom generation. In each iteration, all residue types and structures are simultaneously updated, a process termed full-shot refinement. In the initial stage, the residue types and backbone coordinates are refined using a hierarchical context encoder, complemented by two structure refinement modules that capture both inter-residue and pocket-ligand interactions. The subsequent stage delves deeper, modeling the side-chain atoms of the pockets and updating residue types to ensure sequence-structure congruence. Concurrently, the structure of the binding ligand is refined across iterations to accommodate its inherent flexibility. Comprehensive experiments show that FAIR surpasses existing methods in designing superior pocket sequences and structures, producing average improvement exceeding 10% in AAR and RMSD metrics. FAIR is available at https://github.com/zaixizhang/FAIR.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper9
- Full-Atom Peptide Design based on Multi-modal Flow MatchingJiahan Li, Chaoran Cheng, Zuofan Wu, Ruihan Guo 等ICML 2024 · 被引用 38 次
- FlexSBDD: Structure-Based Drug Design with Flexible Protein ModelingZaixi Zhang, Mengdi Wang, Qi LiuNeurIPS 2024 · 被引用 19 次
- Generalized Protein Pocket Generation with Prior-Informed Flow MatchingZaixi Zhang, Marinka Zitnik, Qi LiuNeurIPS 2024 · 被引用 10 次
- DeltaDock: A Unified Framework for Accurate, Efficient, and Physically Reliable Molecular DockingJiaxian Yan, Zaixi Zhang, Jintao Zhu, Kai Zhang 等NeurIPS 2024 · 被引用 9 次
- Pre-Training Protein Bi-level Representation Through Span Mask Strategy On 3D Protein ChainsJiale Zhao, Wanru Zhuang, Jia Song, Yaqi Li 等ICML 2024 · 被引用 9 次
它引用的顶会 Paper20
- On Layer Normalization in the Transformer ArchitectureRuibin Xiong, Yunchang Yang, Di He, Kai Zheng 等ICML 2020 · 被引用 1,388 次
- GeoDiff: A Geometric Diffusion Model for Molecular Conformation GenerationMinkai Xu, Lantao Yu, Yang Song, Chence Shi 等ICLR 2022 · 被引用 695 次
- Learning from Protein Structure with Geometric Vector PerceptronsBowen Jing, Stephan Eismann, Patricia Suriana, Raphael John Lamarre Townshend 等ICLR 2021 · 被引用 627 次
- Learning inverse folding from millions of predicted structuresChloe Hsu, Robert Verkuil, Jason Liu, Zeming Lin 等ICML 2022 · 被引用 560 次
- Pocket2Mol: Efficient Molecular Sampling Based on 3D Protein PocketsXingang Peng, Shitong Luo, Jiaqi Guan, Qi Xie 等ICML 2022 · 被引用 291 次
相关 Paper
- Harmonic Self-Conditioned Flow Matching for joint Multi-Ligand Docking and Binding Site DesignHannes Stärk, Bowen Jing, Regina Barzilay, Tommi S. JaakkolaICML 2024 · 被引用 43 次
- 3DMolFormer: A Dual-channel Framework for Structure-based Drug DiscoveryXiuyuan Hu, Guoqing Liu, Can Chen, Yang Zhao 等ICLR 2025
- Re-Dock: Towards Flexible and Realistic Molecular Docking with Diffusion BridgeYufei Huang, Odin Zhang, Lirong Wu, Cheng Tan 等ICML 2024 · 被引用 23 次
- Apo2Mol: 3D Molecule Generation via Dynamic Pocket-Aware Diffusion ModelsXinzhe Zheng, Shiyu Jiang, Gustavo de M. Seabra, Chenglong Li 等AAAI 2026 · 被引用 1 次
- Self-supervised Pocket Pretraining via Protein Fragment-Surroundings AlignmentBowen Gao, Yinjun Jia, Yuanle Mo, Yuyan Ni 等ICLR 2024 · 被引用 18 次
