scholarly article | Q13442814 |
P50 | author | Artur Ribeiro | Q50428623 |
Tarsila G Castro | Q56516037 | ||
Nuno G Azoia | Q57059618 | ||
Artur Cavaco-Paulo | Q42887428 | ||
Carla Silva | Q47634895 | ||
P2093 | author name string | Filipa Gonçalves | |
P2860 | cites work | P-LINCS: A Parallel Linear Constraint Solver for Molecular Simulation | Q51897570 |
Particle mesh Ewald: An N⋅log(N) method for Ewald sums in large systems | Q56750591 | ||
Studies on thermoresponsive polymers: Phase behaviour, drug delivery and biomedical applications | Q57356910 | ||
Predicting Crystal Structures: The Parrinello-Rahman Method Revisited | Q60608682 | ||
Porcine odorant-binding protein: structural stability and ligand affinities measured by fourier-transform infrared spectroscopy and fluorescence spectroscopy | Q77343441 | ||
Secondary structure of cell-penetrating peptides controls membrane interaction and insertion | Q83160348 | ||
Peptide-based stimuli-responsive biomaterials | Q97586389 | ||
Validation of the GROMOS 54A7 Force Field with Respect to β-Peptide Folding | Q40271791 | ||
Molecular cloning, expression profile, odorant affinity, and stability of two odorant-binding proteins in Macrocentrus cingulum Brischke (Hymenoptera: Braconidae). | Q41988110 | ||
New fluorescent probes for ligand-binding assays of odorant-binding proteins | Q42004644 | ||
g_mmpbsa--a GROMACS tool for high-throughput MM-PBSA calculations. | Q42217335 | ||
Effect of 1-aminoanthracene (1-AMA) binding on the structure of three lipocalin proteins, the dimeric β lactoglobulin, the dimeric odorant binding protein and the monomeric α1-acid glycoprotein. Fluorescence spectra and lifetimes studies | Q43115283 | ||
An innovative bovine odorant binding protein-based filtering cartridge for the removal of triazine herbicides from water. | Q43350979 | ||
Detection of odorant molecules via surface acoustic wave biosensor array based on odorant-binding proteins. | Q45722390 | ||
Odorant binding proteins: a biotechnological tool for odour control | Q45807513 | ||
Phenylalanine 35 and tyrosine 82 are involved in the uptake and release of ligand by porcine odorant-binding protein. | Q46028152 | ||
Engineering Pak1 Allosteric Switches | Q46075243 | ||
Binding of polycyclic aromatic hydrocarbons to mutants of odorant-binding protein: a first step towards biosensors for environmental monitoring | Q46745285 | ||
OBP fused with cell-penetrating peptides promotes liposomal transduction. | Q47320350 | ||
Purification and Fluorescent Titration of Cellular Retinol-Binding Protein | Q47845888 | ||
Effect of Preorganized Charge-Display on the Cell-Penetrating Properties of Cationic Peptides | Q48188858 | ||
The Protein Data Bank | Q24515306 | ||
Complexes of porcine odorant binding protein with odorant molecules belonging to different chemical classes | Q27625039 | ||
Self-assembly of coiled-coil tetramers in the 1.40 A structure of a leucine-zipper mutant | Q27640948 | ||
Metal-Mediated Affinity and Orientation Specificity in a Computationally Designed Protein Homodimer | Q27675621 | ||
AutoDock Vina: Improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading | Q27860652 | ||
Dictionary of protein secondary structure: pattern recognition of hydrogen-bonded and geometrical features | Q27860675 | ||
GROMACS 4: Algorithms for Highly Efficient, Load-Balanced, and Scalable Molecular Simulation | Q27860944 | ||
Mammalian odorant binding proteins | Q28142710 | ||
An odorant-binding protein is abundantly expressed in the nose and in the seminal fluid of the rabbit | Q28544889 | ||
AutoDock4 and AutoDockTools4: Automated docking with selective receptor flexibility | Q29547658 | ||
Canonical sampling through velocity rescaling | Q29616131 | ||
Protein secondary structure analyses from circular dichroism spectroscopy: methods and reference databases | Q29617578 | ||
Rapid blue-light-mediated induction of protein interactions in living cells | Q30498802 | ||
Engineering extrinsic disorder to control protein activity in living cells | Q30842709 | ||
Evidence of an odorant-binding protein in the human olfactory mucus: location, structural characterization, and odorant-binding properties | Q34131345 | ||
Surfactant proteins SP-A and SP-D: structure, function and receptors. | Q34457931 | ||
Design of thermally responsive, recombinant polypeptide carriers for targeted drug delivery. | Q34971336 | ||
Peptide Anchor for Folate-Targeted Liposomal Delivery | Q35737473 | ||
Design and application of stimulus-responsive peptide systems | Q36766185 | ||
Stimulus responsive peptide based materials. | Q37762740 | ||
Circular dichroism spectroscopy of membrane proteins. | Q38878115 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 14844 | |
P577 | publication date | 2018-10-04 | |
P1433 | published in | Scientific Reports | Q2261792 |
P1476 | title | Two Engineered OBPs with opposite temperature-dependent affinities towards 1-aminoanthracene | |
P478 | volume | 8 |
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