Search results for " Biomolecules"

showing 9 items of 19 documents

How molecular knots can pass through each other

2014

We propose a mechanism in which two molecular knots pass through each other and swap positions along a polymer strand. Associated free energy barriers in our simulations only amount to a few $k_{B}T$, which may enable the interchange of knots on a single DNA strand.

Models MolecularMultidisciplinaryComputersPolymersChemistryFOS: Physical sciencesBiomolecules (q-bio.BM)DNACondensed Matter - Soft Condensed MatterMolecular physicsNanostructuresDiffusionMolecular dynamicsCrystallographyQuantitative Biology - BiomoleculesBiological Physics (physics.bio-ph)FOS: Biological sciencesPhysical SciencesNucleic Acid ConformationThermodynamicsSoft Condensed Matter (cond-mat.soft)Physics - Biological Physics
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Sequence Determines Degree of Knottedness in a Coarse-Grained Protein Model

2015

Knots are abundant in globular homopolymers but rare in globular proteins. To shed new light on this long-standing conundrum, we study the influence of sequence on the formation of knots in proteins under native conditions within the framework of the hydrophobic-polar (HP) lattice protein model. By employing large scale Wang-Landau simulations combined with suitable Monte Carlo trial moves we show that, even though knots are still abundant on average, sequence introduces large variability in the degree of self-entanglements. Moreover, we are able to design sequences which are either almost always or almost never knotted. Our findings serve as proof of concept that the introduction of just o…

Protein ConformationFOS: Physical sciencesGeneral Physics and AstronomyCondensed Matter - Soft Condensed Matterstomatognathic systemComputer SimulationMathematicsSequence (medicine)chemistry.chemical_classificationQuantitative Biology::BiomoleculesDegree (graph theory)Proteinsfood and beveragesBiomolecules (q-bio.BM)Knot theoryAmino acidsurgical procedures operativeModels ChemicalQuantitative Biology - BiomoleculeschemistryFOS: Biological sciencesProtein modelSoft Condensed Matter (cond-mat.soft)Biological systemHydrophobic and Hydrophilic InteractionsMonte Carlo MethodPhysical Review Letters
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Reconstructing the free-energy landscape of Met-enkephalin using dihedral principal component analysis and well-tempered metadynamics

2013

Well-Tempered Metadynamics (WTmetaD) is an efficient method to enhance the reconstruction of the free-energy surface of proteins. WTmetaD guarantees a faster convergence in the long time limit in comparison with the standard metadynamics. It still suffers however from the same limitation, i.e. the non trivial choice of pertinent collective variables (CVs). To circumvent this problem, we couple WTmetaD with a set of CVs generated from a dihedral Principal Component Analysis (dPCA) on the Ramachadran dihedral angles describing the backbone structure of the protein. The dPCA provides a generic method to extract relevant CVs built from internal coordinates. We illustrate the robustness of this …

Protein ConformationSurface PropertiesEnkephalin MethionineFOS: Physical sciencesGeneral Physics and AstronomyDihedral angle01 natural scienceslaw.invention03 medical and health scienceslaw0103 physical sciencesComputer SimulationCartesian coordinate systemPhysics - Biological PhysicsStatistical physicsPhysical and Theoretical ChemistryProtein secondary structureReference modelComputingMilieux_MISCELLANEOUS030304 developmental biologyMathematicsPrincipal Component AnalysisQuantitative Biology::Biomolecules0303 health sciences010304 chemical physicsMetadynamicsEnergy landscapeBiomolecules (q-bio.BM)Condensed Matter - Other Condensed Matter[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryQuantitative Biology - BiomoleculesBiological Physics (physics.bio-ph)FOS: Biological sciencesPrincipal component analysis[ CHIM.THEO ] Chemical Sciences/Theoretical and/or physical chemistryPhysics::Accelerator PhysicsThermodynamicsEnergy MetabolismAlgorithmsOther Condensed Matter (cond-mat.other)Ramachandran plot
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Biosensors for the determination of SARS-CoV-2 virus and diagnosis of COVID-19 infection

2022

Monitoring and tracking infection is required in order to reduce the spread of the coronavirus disease 2019 (COVID-19), induced by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). To achieve this goal, the development and deployment of quick, accurate, and sensitive diagnostic methods are necessary. The determination of the SARS-CoV-2 virus is performed by biosensing devices, which vary according to detection methods and the biomarkers which are inducing/providing an analytical signal. RNA hybridisation, antigen-antibody affinity interaction, and a variety of other biological reactions are commonly used to generate analytical signals that can be precisely detected using electro…

QH301-705.5immune complexSARS-CoV-2 virusBiosensing TechniquesReviewCatalysisInorganic Chemistryelectrochemical immunosensorsCOVID-19 TestingHumansSerologic TestsPhysical and Theoretical ChemistryBiology (General)Molecular BiologyQD1-999SpectroscopySARS-CoV-2bioelectrochemistryOrganic ChemistryCOVID-19General MedicineRNA analysisbiosensorsimmobilisation of biomoleculesNanostructuresComputer Science ApplicationsChemistryMolecular Diagnostic Techniquesmolecularly imprinted polymers (MIPs)antigen-antibody interactionCOVID-19 ; SARS-CoV-2 virus ; biosensors ; electrochemical immunosensors ; bioelectrochemistry ; RNA analysis ; antigen-antibody interaction ; immune complex ; immobilisation of biomolecules ; molecularly imprinted polymers (MIPs)
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The FRET-based structural dynamics challenge -- community contributions to consistent and open science practices

2020

Single-molecule F\"{o}rster resonance energy transfer (smFRET) has become a mainstream technique for probing biomolecular structural dynamics. The rapid and wide adoption of the technique by an ever-increasing number of groups has generated many improvements and variations in the technique itself, in methods for sample preparation and characterization, in analysis of the data from such experiments, and in analysis codes and algorithms. Recently, several labs that employ smFRET have joined forces to try to bring the smFRET community together in adopting a consensus on how to perform experiments and analyze results for achieving quantitative structural information. These recent efforts includ…

Quantitative Biology - BiomoleculesBiological Physics (physics.bio-ph)FOS: Biological sciencesFOS: Physical sciencesBiomolecules (q-bio.BM)Physics - Biological Physics
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Poly-sarcosine and poly(ethylene-glycol) interactions with proteins investigated using molecular dynamics simulations

2018

Nanoparticles coated with hydrophilic polymers often show a reduction in unspecific interactions with the biological environment, which improves their biocompatibility. The molecular determinants of this reduction are not very well understood yet, and their knowledge may help improving nanoparticle design. Here we address, using molecular dynamics simulations, the interactions of human serum albumin, the most abundant serum protein, with two promising hydrophilic polymers used for the coating of therapeutic nanoparticles, poly(ethylene-glycol) and poly-sarcosine. By simulating the protein immersed in a polymer-water mixture, we show that the two polymers have a very similar affinity for the…

SarcosineBiocompatibilityPoly-peptoidlcsh:BiotechnologyBiophysicsFOS: Physical sciencesNanoparticle02 engineering and technologyCondensed Matter - Soft Condensed MatterProtein aggregation010402 general chemistry01 natural sciencesBiochemistryNanoparticle protein coronachemistry.chemical_compoundMolecular dynamicsAdsorptionStructural Biologylcsh:TP248.13-248.65GeneticsmedicinePhysics - Biological Physicschemistry.chemical_classificationBiomolecules (q-bio.BM)MD simulationPolymer021001 nanoscience & nanotechnologyHuman serum albuminPEG0104 chemical sciencesComputer Science ApplicationsQuantitative Biology - BiomoleculeschemistryChemical engineeringBiological Physics (physics.bio-ph)FOS: Biological sciencesSoft Condensed Matter (cond-mat.soft)Poly-sarcosine0210 nano-technologyResearch ArticleBiotechnologymedicine.drug
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Biological activity of organotin(IV) compounds: structural and chemical aspects

2012

Settore CHIM/03 - Chimica Generale E InorganicaAntitumor activity Biomolecules Metabolism Organotin structures QSAR
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Parity violation energy of biomolecules - III: RNA

2006

The energy of parity-violation associated with a typical DNA double helix is estimated with ab initio techniques. It is shown that weak-nuclear interactions do not favor the formation of the double helices found in nature. Possible implications regarding the potential effect of parity-violation interactions on the evolution of biological homochirality are discussed.

chemistry.chemical_classificationPhysicsQuantitative Biology::BiomoleculesBiomoleculePotential effectAb initioGeneral Physics and AstronomyRNAParity violation; biomoleculesParity (physics)Dna double helixbiomoleculeschemistry.chemical_compoundchemistryParity violationComputational chemistryChemical physicsPhysical and Theoretical ChemistryHomochiralityDNA
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Simulated eutrophication and browning alters zooplankton nutritional quality and determines juvenile fish growth and survival

2018

Source at https://doi.org/10.1002/ece3.3832. The first few months of life is the most vulnerable period for fish and their optimal hatching time with zooplankton prey is favored by natural selection. Traditionally, however, prey abundance (i.e., zooplankton density) has been considered important, whereas prey nutritional composition has been largely neglected in natural settings. High‐quality zooplankton, rich in both essential amino acids (EAAs) and fatty acids (FAs), are required as starting prey to initiate development and fast juvenile growth. Prey quality is dependent on environmental conditions, and, for example, eutrophication and browning are two major factors defining primary produ…

compound‐specific stable isotopesDAPHNIArasvahapotcompound-specific stable isotopesaminohapotbiomolekyylitfatty acidsFOOD WEBSORGANIC-CARBONLAKE ECOSYSTEMSPRIMARY PRODUCERSessential biomoleculesVDP::Landbruks- og Fiskerifag: 900::Fiskerifag: 920Original ResearchPOLYUNSATURATED FATTY-ACIDSisotoopitVDP::Agriculture and fishery disciplines: 900::Fisheries science: 920amino acidsfood webfunginutritional qualityDOCOSAHEXAENOIC ACID1181 Ecology evolutionary biologyravintoarvoFRESH-WATER MICROALGAELIPID-COMPOSITIONravintoverkotSOMATIC GROWTH
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