scholarly article | Q13442814 |
P50 | author | John-Marc Chandonia | Q29000419 |
Steven E. Brenner | Q7614656 | ||
P2860 | cites work | Ensembl 2002: accommodating comparative genomics | Q39790520 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | genomics | Q222046 |
whole genome sequencing | Q2068526 | ||
P304 | page(s) | 166-179 | |
P577 | publication date | 2005-01-01 | |
P1433 | published in | Proteins | Q7251514 |
P1476 | title | Implications of structural genomics target selection strategies: Pfam5000, whole genome, and random approaches | |
P478 | volume | 58 |
Q30398414 | 1,000 structures and more from the MCSG. |
Q38311915 | A normalised scale for structural genomics target ranking: the OB-Score |
Q35798553 | An assessment of the amount of untapped fold level novelty in under-sampled areas of the tree of life |
Q37280209 | An estimated 5% of new protein structures solved today represent a new Pfam family |
Q42047721 | Bacterial protein structures reveal phylum dependent divergence |
Q28752276 | Benefits of structural genomics for drug discovery research |
Q33489058 | CRYSTALP2: sequence-based protein crystallization propensity prediction |
Q25255960 | Comprehensive genome analysis of 203 genomes provides structural genomics with new insights into protein family space |
Q38332028 | Computational approaches to selecting and optimising targets for structural biology |
Q27666455 | Crystal structure of a novel non-Pfam protein PF2046 solved using low resolution B-factor sharpening and multi-crystal averaging methods |
Q94101720 | Current Awareness on Comparative and Functional Genomics |
Q24814930 | Functional coverage of the human genome by existing structures, structural genomics targets, and homology models |
Q57937286 | High-throughput structural characterisation of therapeutic protein targets |
Q30424335 | Homology modeling a fast tool for drug discovery: current perspectives |
Q27652286 | Improving NMR protein structure quality by Rosetta refinement: A molecular replacement study |
Q30354708 | Metal ion-mediated reduction in surface entropy improves diffraction quality of crystals of the IRAK-4 death domain |
Q31137952 | Modeling of protein binary complexes using structural mass spectrometry data |
Q30352967 | On the origin and highly likely completeness of single-domain protein structures. |
Q30404009 | Sequence-based prediction of protein crystallization, purification and production propensity |
Q37250261 | Structural genomics is the largest contributor of novel structural leverage |
Q30435844 | Structural genomics: keeping up with expanding knowledge of the protein universe |
Q33237763 | Structural proteomics of minimal organisms: conservation of protein fold usage and evolutionary implications |
Q30363947 | Structure-based inference of molecular functions of proteins of unknown function from Berkeley Structural Genomics Center. |
Q36919983 | Targeting the human cancer pathway protein interaction network by structural genomics |
Q42551770 | The CATH hierarchy revisited-structural divergence in domain superfamilies and the continuity of fold space |
Q29547592 | The Jpred 3 secondary structure prediction server |
Q21089567 | The Sorcerer II Global Ocean Sampling expedition: expanding the universe of protein families |
Q30378455 | The value of protein structure classification information-Surveying the scientific literature. |
Q21284214 | Towards a comprehensive structural coverage of completed genomes: a structural genomics viewpoint |
Q38337971 | XANNpred: neural nets that predict the propensity of a protein to yield diffraction-quality crystals |
Search more.