Search results for "5H"

showing 10 items of 152 documents

CCDC 1830057: Experimental Crystal Structure Determination

2019

Related Article: Jian Yang, Yoann Rousselin, Léo Bucher, Nicolas Desbois, Frédéric Bolze, Hai-Jun Xu, Claude P. Gros|2018|ChemPlusChem|83|838|doi:10.1002/cplu.201800361

4-(28-diethyl-55-difluoro-1379-tetramethyl-5H-4lambda55lambda5-dipyrrolo[12-c:2'1'-f][132]diazaborinin-10-yl)-NN-diphenylanilineSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 804804: Experimental Crystal Structure Determination

2013

Related Article: D.H.Nguyen, J.Bayardon, C.Salomon-Bertrand, S.Juge, P.Kalck, J.-C.Daran, M.Urrutigoity, M.Gouygou|2012|Organometallics|31|857|doi:10.1021/om2008265

5-((Diphenylphosphino)methyl)-5H-benzo[b]phosphindoleSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 2067944: Experimental Crystal Structure Determination

2022

Related Article: Jingyu Zhang, Wei Xia, Saskia Huda, Jas S. Ward, Kari Rissanen, Markus Albrecht|2021|Adv.Synth.Catal.|363|3121|doi:10.1002/adsc.202100290

5-(4-chlorobenzene-1-sulfonyl)-5a6-dihydroindolo[21-b]quinazolin-12(5H)-oneSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1866675: Experimental Crystal Structure Determination

2018

Related Article: Anton Kehl, Valentina M. Breising, Dieter Schollmeyer, Siegfried R. Waldvogel|2018|Chem.-Eur.J.|24|17230|doi:10.1002/chem.201804638

5-(4-chlorophenyl)phenanthridin-6(5H)-oneSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 868802: Experimental Crystal Structure Determination

2012

Related Article: A.Cornia, F.Felluga, V.Frenna, F.Ghelfi, A.F.Parsons, M.Pattarozzi, F.Roncaglia, D.Spinelli|2012|Tetrahedron|68|5863|doi:10.1016/j.tet.2012.04.117

66'-Diethyl-77'-diphenyl-22'33'-tetrahydro-5H5'H-7a7a'-bipyrrolo[21-b][13]thiazole-55'-dioneSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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De novo mutation in a male patient with Fabry disease: a case report

2014

Abstract Background Fabry disease is an X-linked inherited metabolic condition where the deficit of the α-galactosidase A enzyme, encoded by the GLA gene, leads to glycosphingolipid storage, mainly globotriaosylceramide. To date, more than 600 mutations have been identified in human GLA gene that are responsible for FD, including missense and nonsense mutations, small and large deletions. Such mutations are usually inherited, and cases of de novo onset occur rarely. Case presentation In this article we report an interesting case of a 44-year-old male patient suffering from a severe form of Fabry disease, with negative family history. The patient showed signs such as cornea verticillata, ang…

AdultMaleProtein Foldingα-galactosidase ADe novo mutationNonsense mutationD165H mutationGlobotriaosylceramideMutation MissenseCase ReportBiologymedicine.disease_causeGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundGermline mutationmedicineMissense mutationHumansPoint MutationThrombophiliaEnzyme Replacement TherapyAmino Acid SequenceChildGLA geneConserved SequenceGerm-Line MutationMedicine(all)GeneticsMutationFabry diseaseSequence Homology Amino AcidBiochemistry Genetics and Molecular Biology(all)Point mutationGeneral MedicineEnzyme replacement therapymedicine.diseaseFabry diseasePedigreeStrokechemistryAmino Acid Substitutionalpha-GalactosidaseKidney Failure ChronicFemaleSymptom AssessmentSequence AlignmentBMC Research Notes
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Donation and back-donation in cis- and trans-[(η5-C5H5)Fe(η1-CO)(μ-CO)]2 tautomers: Which relative is more generous? An ETS-NOCV bond analysis

2022

The ETS-NOCV bond analysis has been exploited to quantitatively estimate donation and back-donation properties of [(η5-C5H5)]−, CO, and FeI in the cis-/trans-[(η5-C5H5)Fe(η1-CO)(μ-CO)]2 (cis-I/trans-I) tautomers. Theoretical outcomes indicate that the Fe-CO bond, regardless to the CO monoapto (η1-) or bridging (μ-) coordination, has a sizeable π Fe → CO back-bonding contribution, which is stronger in trans-I than in cis-I. Moreover, [(η5-C5H5)]− has the weakest back-donation acceptor capability. The back-bonding behaviour of the Fe → η1-CO interaction well agrees with the experimental symmetric/antisymmetric infrared νCO (sνηjavax.xml.bind.JAXBElement@fc12185-CO/aνηjavax.xml.bind.JAXBElemen…

Bond Analysis cis-/trans-[(η5-C5H5)Fe(η1-CO)(μ-CO)]2 Charge Displacement analysis DFT.Inorganic ChemistrySettore CHIM/03 - Chimica Generale E InorganicaMaterials ChemistryPhysical and Theoretical ChemistryInorganica Chimica Acta
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Neuronal FGFR1 transactivation by inducing FGFR1/5-HT1A heteroreceptor complexes formation

2011

There are no clear data on the molecular mechanism by which the hippocampal 5-HT transmission contributes to the neuroprotective and antidepressant effects of 5-HT uptake blockers. Previously, we revealed that a 5-HT1A agonist may induce phosphorylation of FGFR1 and ERK1/2 in rat hippocampus independent of FGF-2, suggesting transactivation of FGFR1 tyrosine kinase in the absence of neurotrophic factor binding. As extension of previous work, using BRET analysis and coimmunoprecipitation in cellular models, FGFR1-5-HT1A heteroreceptor complexes have been demonstrated and agonist modulation characterized. In vitro assays on ERK1/2 phosphorylation in HEK cells and primary hippocampal cultures h…

FGFR1 5HT1A transactivation
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Conformality and $Q$-harmonicity in sub-Riemannian manifolds

2016

We prove the equivalence of several natural notions of conformal maps between sub-Riemannian manifolds. Our main contribution is in the setting of those manifolds that support a suitable regularity theory for subelliptic $p$-Laplacian operators. For such manifolds we prove a Liouville-type theorem, i.e., 1-quasiconformal maps are smooth. In particular, we prove that contact manifolds support the suitable regularity. The main new technical tools are a sub-Riemannian version of p-harmonic coordinates and a technique of propagation of regularity from horizontal layers.

Harmonic coordinatesMathematics - Differential GeometryPure mathematicsWork (thermodynamics)morphism propertyGeneral Mathematicsconformal transformationBoundary (topology)Conformal map01 natural sciencesdifferentiaaligeometriaMathematics - Analysis of PDEsMathematics - Metric GeometryLiouville TheoremRegularity for p-harmonic functionSubelliptic PDE0103 physical sciencesFOS: MathematicsMathematics (all)0101 mathematicspopp measureMathematicsosittaisdifferentiaaliyhtälötsubelliptic PDESmoothnessQuasi-conformal mapApplied MathematicsHarmonic coordinates; Liouville Theorem; Quasi-conformal maps; Regularity for p-harmonic functions; Sub-Riemannian geometry; Subelliptic PDE; Mathematics (all); Applied Mathematicsta111Harmonic coordinate010102 general mathematics53C17 35H20 58C25Metric Geometry (math.MG)16. Peace & justiceregularity for p-harmonic functionsSub-Riemannian geometrysub-Riemannian geometryDifferential Geometry (math.DG)quasi-conformal mapsRegularity for p-harmonic functionsharmonic coordinates010307 mathematical physicsMathematics::Differential GeometrymonistotLiouville theoremAnalysis of PDEs (math.AP)
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Calder\'on's problem for p-Laplace type equations

2016

We investigate a generalization of Calder\'on's problem of recovering the conductivity coefficient in a conductivity equation from boundary measurements. As a model equation we consider the p-conductivity equation with p strictly between one and infinity, which reduces to the standard conductivity equation when p equals two, and to the p-Laplace equation when the conductivity is constant. The thesis consists of results on the direct problem, boundary determination and detecting inclusions. We formulate the equation as a variational problem also when the conductivity may be zero or infinity in large sets. As a boundary determination result we recover the first order derivative of a smooth co…

Mathematics - Analysis of PDEs35R30 (Primary) 35J92 35R05 35D30 35Q60 35Q79 35J20 35J25 35H99 35A15 35A01 35A02 80A23 (Secondary)
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