scholarly article | Q13442814 |
P8978 | DBLP publication ID | journals/bmcbi/SunZWGG16 |
P6179 | Dimensions Publication ID | 1005474735 |
P356 | DOI | 10.1186/S12859-016-1185-4 |
P932 | PMC publication ID | 4995733 |
P698 | PubMed publication ID | 27553667 |
P50 | author | Ming-An Sun | Q59676988 |
P2093 | author name string | Qing Zhang | |
Wei Ge | |||
Dianjing Guo | |||
Yejun Wang | |||
P2860 | cites work | Identifying Important Risk Factors for Survival in Kidney Graft Failure Patients Using Random Survival Forests | Q22673963 |
Gapped BLAST and PSI-BLAST: a new generation of protein database search programs | Q24545170 | ||
Thiol-based regulation of redox-active glutamate-cysteine ligase from Arabidopsis thaliana | Q24564789 | ||
SCRATCH: a protein structure and structural feature prediction server | Q24812422 | ||
The genomics of disulfide bonding and protein stabilization in thermophiles | Q24814780 | ||
Structural and Biochemical Bases for the Redox Sensitivity of Mycobacterium tuberculosis RslA | Q27660054 | ||
WebLogo: A Sequence Logo Generator | Q27860646 | ||
The cysteine proteome | Q28395817 | ||
Pathways of Oxidative Damage | Q29615094 | ||
Protein S-nitrosylation: purview and parameters | Q29615181 | ||
Signal transduction by reactive oxygen species | Q29615230 | ||
ROS as signalling molecules: mechanisms that generate specificity in ROS homeostasis | Q29617340 | ||
Analysis of membrane and surface protein sequences with the hydrophobic moment plot | Q29618183 | ||
Improving disulfide connectivity prediction with sequential distance between oxidized cysteines. | Q30351624 | ||
Identifying cysteines and histidines in transition-metal-binding sites using support vector machines and neural networks. | Q30356403 | ||
SSpro/ACCpro 5: almost perfect prediction of protein secondary structure and relative solvent accessibility using profiles, machine learning and structural similarity. | Q30362846 | ||
Zinc-binding cysteines: diverse functions and structural motifs. | Q30364031 | ||
Prediction of reversibly oxidized protein cysteine thiols using protein structure properties | Q30367869 | ||
Redox biology: computational approaches to the investigation of functional cysteine residues | Q30393259 | ||
Cysteine function governs its conservation and degeneration and restricts its utilization on protein surfaces | Q30394922 | ||
UniProtKB/Swiss-Prot | Q33320620 | ||
A structure-based approach for detection of thiol oxidoreductases and their catalytic redox-active cysteine residues | Q33441359 | ||
DBCP: a web server for disulfide bonding connectivity pattern prediction without the prior knowledge of the bonding state of cysteines. | Q33957580 | ||
Oxidation of zinc-binding cysteine residues in transcription factor proteins | Q34367561 | ||
Signaling functions of reactive oxygen species. | Q34482191 | ||
Cysteine-Based Redox Switches in Enzymes | Q34722134 | ||
Protein S-nitrosylation in health and disease: a current perspective | Q35020178 | ||
Thiol-based redox switches and gene regulation | Q35040525 | ||
Oxidant signals and oxidative stress | Q35089394 | ||
Metal and redox modulation of cysteine protein function | Q35211177 | ||
Determinants of redox sensitivity in RsrA, a zinc-containing anti-sigma factor for regulating thiol oxidative stress response | Q35224408 | ||
Analysis and functional prediction of reactive cysteine residues | Q35763092 | ||
The role of cysteine residues as redox-sensitive regulatory switches | Q35975035 | ||
Redox regulation: a broadening horizon | Q36110960 | ||
Thiol-based mechanisms of the thioredoxin and glutaredoxin systems: implications for diseases in the cardiovascular system | Q36685478 | ||
Quantifying changes in the thiol redox proteome upon oxidative stress in vivo. | Q36751426 | ||
Regulation of protein function and signaling by reversible cysteine S-nitrosylation. | Q37168349 | ||
Oxidant Sensing by Reversible Disulfide Bond Formation | Q37168354 | ||
Functional diversity of cysteine residues in proteins and unique features of catalytic redox-active cysteines in thiol oxidoreductases | Q37224246 | ||
Expanding the functional diversity of proteins through cysteine oxidation. | Q37274152 | ||
MetalDetector: a web server for predicting metal-binding sites and disulfide bridges in proteins from sequence | Q37319378 | ||
Thiol-based redox switches in eukaryotic proteins | Q37322426 | ||
Conformational changes in redox pairs of protein structures | Q37420197 | ||
Disulfides as redox switches: from molecular mechanisms to functional significance | Q37563475 | ||
Reversible cysteine oxidation in hydrogen peroxide sensing and signal transduction | Q38205039 | ||
Redox proteomics: Methods for the identification and enrichment of redox-modified proteins and their applications | Q38618081 | ||
MetalDetector v2.0: predicting the geometry of metal binding sites from protein sequence | Q42091053 | ||
Prediction of disulfide connectivity from protein sequences | Q42668404 | ||
RedoxDB—a curated database for experimentally verified protein oxidative modification | Q44632033 | ||
Learning to discriminate between ligand-bound and disulfide-bound cysteines | Q44913000 | ||
Redox sensitive cysteine residues in calbindin D28k are structurally and functionally important | Q45217915 | ||
Cysteine oxidation by the superoxide radical: a theoretical study | Q46067875 | ||
Predicting disulfide bond connectivity in proteins by correlated mutations analysis | Q46802200 | ||
High-throughput identification of catalytic redox-active cysteine residues | Q48082173 | ||
Identification of RNA-binding sites in proteins by integrating various sequence information | Q50550153 | ||
Role of evolutionary information in predicting the disulfide-bonding state of cysteine in proteins | Q52209259 | ||
Gene Selection for Cancer Classification using Support Vector Machines | Q56535529 | ||
Feature selection and analysis on correlated gas sensor data with recursive feature elimination | Q57809075 | ||
New descriptors of amino acids and their application to peptide QSAR study | Q81593670 | ||
P433 | issue | 1 | |
P304 | page(s) | 316 | |
P577 | publication date | 2016-08-24 | |
P1433 | published in | BMC Bioinformatics | Q4835939 |
P1476 | title | Prediction of redox-sensitive cysteines using sequential distance and other sequence-based features | |
P478 | volume | 17 |
Q47216858 | Assessing the Performances of Protein Function Prediction Algorithms from the Perspectives of Identification Accuracy and False Discovery Rate. |
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