| Literature DB >> 29238747 |
Zhou Gong1,2, Zhu Liu3, Xu Dong1,2, Yue-He Ding4, Meng-Qiu Dong5, Chun Tang1,2.
Abstract
Chemical cross-linking coupled with mass spectroscopy (CXMS) is a powerful technique for investigating protein structures. CXMS has been mostly used to characterize the predominant structure for a protein, whereas cross-links incompatible with a unique structure of a protein or a protein complex are often discarded. We have recently shown that the so-called over-length cross-links actually contain protein dynamics information. We have thus established a method called DynaXL, which allow us to extract the information from the over-length cross-links and to visualize protein ensemble structures. In this protocol, we present the detailed procedure for using DynaXL, which comprises five steps. They are identification of highly confident cross-links, delineation of protein domains/subunits, ensemble rigid-body refinement, and final validation/assessment. The DynaXL method is generally applicable for analyzing the ensemble structures of multi-domain proteins and protein-protein complexes, and is freely available at www.tanglab.org/resources.Entities:
Keywords: Chemical cross-linking; DynaXL; Ensemble refinement; Multi-domain protein; Protein–protein complex; Solvent accessible surface distance
Year: 2017 PMID: 29238747 PMCID: PMC5719800 DOI: 10.1007/s41048-017-0044-9
Source DB: PubMed Journal: Biophys Rep ISSN: 2364-3439
Fig. 1Chemical structure for the BS3 cross-link of two lysine residues in peptides A and B. The straight-line distance is less than 24 Å between the Cα atoms, and less than 24 Å between the Nζ atoms. Note that the lysine side-chain amine group switches from sp3 hybridization to sp2 hybridization
Fig. 2Key features of DynaXL program. A Comparison of Euclidean distance (denoted with yellow dashed line) and solvent accessible surface distance (denoted with cyan sphere) for Cβ atoms of the two Lys residues in the protein. B The graphical user interface for DynaXL, in which one residue can be cross-linked to multiple residues with different cross-linking reagents
Fig. 3The overall flowchart for the refinement of protein ensemble structures using DynaXL
| ATOM | 2261 | C | LYS | 148 | 12.612 | 14.659 | − 4.066 | 1.00 | 0.00 |
| ATOM | 2262 | OT1 | LYS | 148 | 12.190 | 15.449 | − 4.923 | 1.00 | 0.00 |
| ATOM | 2263 | OT2 | LYS | 148 | 12.190 | 15.449 | − 4.923 | 1.00 | 0.00 |