scholarly article | Q13442814 |
P356 | DOI | 10.1107/S1399004715008597 |
P698 | PubMed publication ID | 26143920 |
P2093 | author name string | Tao Zhang | |
Quan Hao | |||
Hongmin Zhang | |||
Weizhe Zhang | |||
Haifu Fan | |||
P2860 | cites work | Evidence for Direct Protein-Protein Interaction between Members of the Enterobacterial Hha/YmoA and H-NS Families of Proteins | Q24544235 |
Modularity and community structure in networks | Q24548534 | ||
A brief history of hemoglobins: plant, animal, protist, and bacteria | Q24609704 | ||
The origins and evolution of functional modules: lessons from protein complexes | Q24673696 | ||
Anti-CD38 antibody therapy: windows of opportunity yielded by the functional characteristics of the target molecule | Q27015933 | ||
Crystal structure of the N-terminal dimerisation domain of VicH, the H-NS-like protein of Vibrio cholerae | Q27642507 | ||
Crystal structure of NDM‐1 reveals a common β‐lactam hydrolysis mechanism | Q27667484 | ||
Structural Insights into the Regulation of Foreign Genes in Salmonella by the Hha/H-NS Complex | Q27676910 | ||
Vesiculoviral matrix (M) protein occupies nucleic acid binding site at nucleoporin pair (Rae1bulletNup98) | Q27684320 | ||
Maximum-likelihood density modification | Q27860478 | ||
Overview of the CCP4 suite and current developments | Q27860782 | ||
REFMAC5 for the refinement of macromolecular crystal structures | Q27860905 | ||
Phasercrystallographic software | Q27860930 | ||
Automated macromolecular model building for X-ray crystallography using ARP/wARP version 7 | Q27860936 | ||
The Buccaneer software for automated model building. 1. Tracing protein chains | Q27860979 | ||
Network biology: understanding the cell's functional organization | Q27861027 | ||
Features and development of Coot | Q27861079 | ||
Automated main-chain model building by template matching and iterative fragment extension | Q27861082 | ||
Iterative model building, structure refinement and density modification with the PHENIX AutoBuild wizard | Q28131661 | ||
Crystal structure of human CD38 extracellular domain | Q28271561 | ||
From molecular to modular cell biology | Q29547493 | ||
Super-resolution biomolecular crystallography with low-resolution data | Q29616381 | ||
Unscrambling the puzzle of biological machines: the importance of the details | Q33340313 | ||
Model-building strategies for low-resolution X-ray crystallographic data | Q33403167 | ||
De novo design of an IL-4 antagonist and its structure at 1.9 A. | Q33836883 | ||
The discovery of RNA polymerase | Q34460349 | ||
Tryptophan synthase: a mine for enzymologists | Q34977328 | ||
Computational design of protein-protein interactions | Q35703211 | ||
Protein complexes: structure prediction challenges for the 21st century | Q36046407 | ||
Improved crystallographic models through iterated local density-guided model deformation and reciprocal-space refinement | Q36073490 | ||
Antibody-antigen complexes | Q37943232 | ||
Molecular modeling of the GABA(C) receptor ligand-binding domain | Q48549367 | ||
OASIS and molecular-replacement model completion | Q51912098 | ||
Purification of proteins fused to maltose-binding protein | Q54376903 | ||
P433 | issue | Pt 7 | |
P921 | main subject | automation | Q184199 |
protein structure | Q735188 | ||
P304 | page(s) | 1487-1492 | |
P577 | publication date | 2015-06-30 | |
P1433 | published in | Acta Crystallographica Section D: Biological Crystallography | Q1933255 |
P1476 | title | Protein-complex structure completion using IPCAS (Iterative Protein Crystal structure Automatic Solution). | |
P478 | volume | 71 |
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