Search results for " pigmento"

showing 10 items of 100 documents

RNA dependent DNA polymerase in cells of xeroderma pigmentosum

1971

Abstract Cells from X.P. ∗ skin contain an RNA dependent DNA polymerase, while in cells from normal skin this enzyme is lacking. This finding stimulates the thought that carcinogenesis in X.P. cells is due to an infection with an oncogenic RNA virus.

Xeroderma pigmentosumHepatitis B virus DNA polymeraseDNA polymeraseDNA polymerase IIDeoxyribonucleotidesPolynucleotidesBiophysicsRNA-dependent RNA polymeraseTritiummedicine.disease_causeRauscher VirusBiochemistryMicemedicineAnimalsChemical PrecipitationHumansMolecular BiologySkinchemistry.chemical_classificationXeroderma Pigmentosumintegumentary systembiologyRNA virusDNATemplates GeneticCell BiologyRibonucleotidesmedicine.diseasebiology.organism_classificationVirologyMolecular biologyStimulation ChemicalEnzymechemistryAmmonium SulfateDNA Nucleotidyltransferasesbiology.proteinRNAFemaleGuanosine TriphosphateCarcinogenesisBiochemical and Biophysical Research Communications
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Polymorphisms in DNA repair genes modulate survival in cisplatin/gemcitabine-treated non-small-cell lung cancer patients.

2006

Abstract Background: Impaired DNA repair capacity may favorably affect survival in cisplatin/gemcitabine-treated non-small-cell lung cancer (NSCLC) patients. We investigated the association of survival with genetic polymorphisms in X-ray repair cross-complementing group 1 and group 3 (XRCC3), xeroderma pigmentosum group D (XPD), excision repair cross-complementing group 1, ligase IV, ribonucleotide reductase, TP53, cyclooxygenase-2, interleukin-6, peroxisome proliferator-activated receptor γ, epidermal growth factor, methylene-tetra-hydrofolate reductase and methionine synthase. Patients and methods: One hundred and thirty-five stage IV or IIIB (with malignant pleural effusion) NSCLC patien…

Xeroderma pigmentosumLung NeoplasmsDNA RepairGenotypeDeoxycytidineXRCC1Carcinoma Non-Small-Cell LungAntineoplastic Combined Chemotherapy ProtocolsmedicineHumansCisplatin; DNA repair genes; Gemcitabine; Non-small-cell lung cancer; Polymorphisms; XRCC3Lung cancerXRCC3Survival analysisCisplatinPolymorphism GeneticDNA repair genesbusiness.industryHazard ratioHematologymedicine.diseaseSurvival AnalysisGemcitabineGemcitabineOncologyCancer researchCisplatinbusinessPolymorphismsNon-small-cell lung cancerNucleotide excision repairmedicine.drugAnnals of oncology : official journal of the European Society for Medical Oncology
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Interactions in the network of Usher syndrome type 1 proteins

2004

International audience; Defects in myosin VIIa, harmonin (a PDZ domain protein), cadherin 23, protocadherin 15 and sans (a putative scaffolding protein), underlie five forms of Usher syndrome type I (USH1). Mouse mutants for all these proteins exhibit disorganization of their hair bundle, which is the mechanotransduction receptive structure of the inner ear sensory cells, the cochlear and vestibular hair cells. We have previously demonstrated that harmonin interacts with cadherin 23 and myosin VIIa. Here we address the extent of interactions between the five known USH1 proteins. We establish the previously suggested sans-harmonin interaction and find that sans also binds to myosin VIIa. We …

[SDV]Life Sciences [q-bio]Hearing Loss SensorineuralStereocilia (inner ear)PDZ domainCadherin Related ProteinsProtocadherinCell Cycle ProteinsNerve Tissue ProteinsCuticular plateMyosinsBiologyMiceTwo-Hybrid System TechniquesHair Cells AuditoryBone plateMyosinotorhinolaryngologic diseasesGeneticsAnimalsHumansProtein PrecursorsMolecular BiologyGenetics (clinical)GeneticsStereociliumDyneinsSyndromeGeneral MedicineCadherinsCell biologyCytoskeletal ProteinsMyosin VIIaMutationsense organsCarrier ProteinsRetinitis PigmentosaPCDH15HeLa CellsProtein BindingHuman Molecular Genetics
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PCARE and WASF3 regulate ciliary F-actin assembly that is required for the initiation of photoreceptor outer segment disk formation

2020

Significance The photoreceptor outer segments are primary cilia, modified for phototransduction by incorporation of stacked opsin-loaded membrane disks that are continuously regenerated. This process is disrupted in several types of inherited retinal dystrophy, but the driving force remained unclear. We show that C2orf71/PCARE (photoreceptor cilium actin regulator), associated with inherited retinal dystrophy subtype RP54, efficiently recruits the Arp2/3 complex activator WASF3 to the cilium. This activates an actin dynamics-driven expansion of the ciliary tip, resembling membrane evagination in lamellipodia formation. Colocalization of this actin dynamics module to the base of the outer se…

ciliummacromolecular substancesSensory disorders Donders Center for Medical Neuroscience [Radboudumc 12]Actin-Related Protein 2-3 Complexchemistry.chemical_compoundMiceAll institutes and research themes of the Radboud University Medical Centerretinitis pigmentosaRetinitis pigmentosamedicineGeneticsAnimalsHumansCiliaRNA Small InterferingCiliary tipEye ProteinsCiliary membraneActinMice KnockoutMultidisciplinaryCiliumouter segmentsRetinalBiological Sciencesmedicine.diseaseRod Cell Outer SegmentPhotoreceptor outer segmentphotoreceptorActinsCell biologyWiskott-Aldrich Syndrome Protein FamilyDisease Models AnimalRenal disorders Radboud Institute for Molecular Life Sciences [Radboudumc 11]chemistryPNAS PlusGene Expression RegulationRetinal Cone Photoreceptor Cellssense organsactinCone-Rod DystrophiesVisual phototransductionProceedings of the National Academy of Sciences USA
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Activity and kinetics of DNA dependent DNA and RNA polymerases n xeroderma pigmentosum and in normal human skin.

1971

1. DNA dependent DNA polymerase (E.C.2.7.7.7) was prepared from human normal and from Xeroderma pigmentosum skin. 2. DNA polymerase from normal skin has the same Michaelis constant with native and denatured DNA as templateKm= 120 ± 11 µg DNA/ml, with differing maximum reaction velocities. 3. The enzyme from Xeroderma pigmentosum has the same Michaelis constant for denatured DNA as the enzyme from normal skin, but with native DNA as template, theKmvalue is lower (97.2 ± 9.8). The maximum reaction velocities of the Xeroderma pigmentosum enzyme with native resp. denatured DNA as template are the same. 4. DNA dependent RNA polymerases (E.C.2.7.7.6) from normal and Xeroderma pigmentosum skin wer…

congenital hereditary and neonatal diseases and abnormalitiesXeroderma pigmentosumDNA polymeraseDNA polymerase IIDermatologyTritiumEndonucleasechemistry.chemical_compoundmedicineHumansskin and connective tissue diseasesPolymeraseSkinCarbon IsotopesXeroderma PigmentosumDNA clampintegumentary systembiologynutritional and metabolic diseasesRNA NucleotidyltransferasesGeneral MedicineDNAClinical Enzyme Testsmedicine.diseaseMolecular biologyEnzyme ActivationchemistryDNA Nucleotidyltransferasesbiology.proteinPrimer (molecular biology)DNAArchiv fur dermatologische Forschung
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Beneficial effects of saffron (

2020

Saffron (Crocus sativus L.) has been traditionally used in food preparation and as a medicinal plant. It currently has numerous therapeutic properties attributed to it, such as protection against ischemia, as well as anticonvulsant, antidepressant, anxiolytic, hypolipidemic, anti-atherogenic, anti-hypertensive, antidiabetic, and anti-cancer properties. In addition, saffron has remarkable beneficial properties, such as anti-apoptotic, anti-inflammatory and antioxidant activities, due to its main metabolites, among which crocin and crocetin stand out. Furthermore, increasing evidence underwrites the possible neuroprotective role of the main bioactive saffron constituents in neurodegenerative …

crocindiabetic retinopathyglaucomaretinitis pigmentosaocular diseasescrocetinsaffronneuroprotectionReviewAMDsafranalCrocus sativus L.eye diseasesNeural regeneration research
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Prodotti innovativi premiscelati per il rivestimento superficiale di edifici: attività fotocatalitica ed influenza dei pigmenti minerali

2009

fotocatalisi premiscelato pigmentoSettore ICAR/11 - Produzione Edilizia
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Suppression and Replacement Gene Therapy for Autosomal Dominant Disease in a Murine Model of Dominant Retinitis Pigmentosa

2011

For dominantly inherited disorders development of gene therapies, targeting the primary genetic lesion has been impeded by mutational heterogeneity. An example is rhodopsin-linked autosomal dominant retinitis pigmentosa with over 150 mutations in the rhodopsin gene. Validation of a mutation-independent suppression and replacement gene therapy for this disorder has been undertaken. The therapy provides a means of correcting the genetic defect in a mutation-independent manner thereby circumventing the mutational diversity. Separate adeno-associated virus (AAV) vectors were used to deliver an RNA interference (RNAi)-based rhodopsin suppressor and a codon-modified rhodopsin replacement gene res…

genetic structuresGenetic enhancementMice TransgenicPolymerase Chain ReactionPhotoreceptor cellMiceRNA interferenceRetinitis pigmentosaDrug DiscoverymedicineGeneticsElectroretinographyAnimalsGeneMolecular BiologyPharmacologyGene therapy of the human retinabiologyAutosomal dominant traitGenetic Therapymedicine.diseaseMolecular biologyDisease Models Animalmedicine.anatomical_structureRhodopsinbiology.proteinMolecular MedicineOriginal Articlesense organsRetinitis PigmentosaMolecular Therapy
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Grosor coroideo en la retinosis pigmentaria

2013

La coroides como estructura vascular ocular, se encuentra implicada en la fisiopatología de diversas patologías oftalmológicas. Recientemente se ha observado que su espesor se encuentra alterado en diferentes enfermedades coriorretinianas, y además su flujo se encuentra reducido en la Retinosis Pigmentaria. Por lo que planteamos una tesis para el estudio del grosor coroideo en esta distrofia coriorretiniana. Los objetivos de la misma fueron determinar cuantitativamente el grosor coroideo mediante tomografía de coherencia óptica (Cirrus-HD-OCT®) en pacientes con Retinosis Pigmentaria y en sujetos sanos; y su posterior comparación entre ambos grupos. Secundariamente se analizó su posible corr…

grosor coroideogenetic structuresretinitis pigmentosaUNESCO::CIENCIAS MÉDICASretinosis pigmentosasense organsretinitis pigmentaria:CIENCIAS MÉDICAS [UNESCO]retinosis pigmentariaeye diseases
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2020

X-chromosomal retinitis pigmentosa (RP) frequently is caused by mutations in the retinitis pigmentosa GTPase regulator (RPGR) gene. We evaluated the potential of PTC124 (Ataluren, TranslamaTM) treatment to promote ribosomal read-through of premature termination codons (PTC) in RPGR. Expression constructs in HEK293T cells showed that the efficacy of read-through reagents is higher for UGA than UAA PTCs. We identified the novel hemizygous nonsense mutation c.1154T > A, p.Leu385* (NM_000328.3) causing a UAA PTC in RPGR and generated patient-derived fibroblasts. Immunocytochemistry of serum-starved control fibroblasts showed the RPGR protein in a dot-like expression pattern along the primary…

media_common.quotation_subjectCiliumOrganic ChemistryNonsense mutationHEK 293 cellsNonsenseGeneral MedicineRetinitis pigmentosa GTPase regulatorBiologymedicine.diseaseMolecular biologyeye diseasesCatalysisComputer Science ApplicationsAtalurenInorganic Chemistrychemistry.chemical_compoundchemistryRetinitis pigmentosamedicinePhysical and Theoretical ChemistryMolecular BiologyGeneSpectroscopymedia_commonInternational Journal of Molecular Sciences
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