Search results for "remodeling"

showing 10 items of 357 documents

RNA-based regulation of transposon expression

2015

Throughout the domains of life, transposon activity represents a serious threat to genome integrity and evolution has realized different molecular mechanisms that aim to inhibit the transposition of mobile DNA. Small noncoding RNAs that function as guides for Argonaute effector proteins represent a key feature of so-called RNA interference (RNAi) pathways and specialized RNAi pathways exist to repress transposon activity on the transcriptional and posttranscriptional level. Transposon transcription can be diminished by targeted DNA methylation or chromatin remodeling via repressive Histone modifications. Posttranscriptional transposon silencing bases on degradation of transposon transcripts…

GeneticsTransposable elementRNA interferenceDNA methylationRNATransposon mutagenesisBiologyArgonauteSleeping Beauty transposon systemMolecular BiologyBiochemistryChromatin remodelingWiley Interdisciplinary Reviews: RNA
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Histone Code and Higher-Order Chromatin Folding: A Hypothesis

2016

AbstractHistone modifications alone or in combination are thought to modulate chromatin structure and function; a concept termed histone code. By combining evidence from several studies, we investigated if the histone code can play a role in higher-order folding of chromatin. Firstly using genomic data, we analyzed associations between histone modifications at the nucleosome level. We could dissect the composition of individual nucleosomes into five predicted clusters of histone modifications. Secondly, by assembling the raw reads of histone modifications at various length scales, we noticed that the histone mark relationships that exist at nucleosome level tend to be maintained at the high…

GenomicsSolenoid (DNA)Computational biologyChromatin remodelingArticleepigenetic regulationchemistry.chemical_compoundHistone H1super-resolution microscopyHistone methylationHistone H2ANucleosomeHistone codemeiosishistone modificationHistone octamerEpigeneticsGeneticsbiologynucleosomeFolding (DSP implementation)ChromatinHistonechemistrychromatin foldinghistone codebiology.proteinDNAchromatin organizationGenomics and computational biology
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Chromatin structure of the yeast SUC2 promoter in regulatory mutants

1992

We have previously suggested that two positioned nucleosomes are removed from the promoter of the Saccharomyces cerevisiae SUC2 gene upon derepression by glucose starvation. To gain further insight into the changes accompanying derepression at the chromatin level we have studied the chromatin structure of the SUC2 promoter in several mutants affecting SUC2 expression. The non-derepressible mutants snf1, snf2 and snf5 present a chromatin structure characteristic of the repressed state, irrespective of the presence or absence of glucose. The non-repressible mutants, mig1 and ssn6, as well as the double mutant snfs sn6 exhibit an opened chromatin structure even in the presence of glucose. Thes…

GenotypeGenes FungalRestriction MappingMutantSaccharomyces cerevisiaeSaccharomyces cerevisiaeGeneticsMicrococcal NucleaseNucleosomeChromatin structure remodeling (RSC) complexDNA FungalPromoter Regions GeneticMolecular BiologyChIA-PETDerepressionBase SequenceModels Geneticbiologyfungibiology.organism_classificationChromatinChromatinDNA-Binding ProteinsGlucoseBiochemistryMutationbiology.proteinBivalent chromatinMolecular and General Genetics MGG
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Health Implications of Judo Training

2021

Although current physical activity (PA) guidelines regarding aerobic and anaerobic training are helpful for the population at large, many individuals prefer to engage in alternative forms of PA such as combat sports. As both a martial art and sport, judo is a physically demanding form of PA that potentially offers a novel experience, consequently leading to greater PA adherence. This study aimed to thoroughly search the existing literature to determine the health benefits of judo-specific training. PubMed and Web of Science were searched for original research studies. Only peer-reviewed studies that examined the effects of judo training in males and females aged 18–35 were included in the s…

Gerontologyobesityarterial hypertensionGeography Planning and DevelopmentPopulationTJ807-830Management Monitoring Policy and LawHealth benefitsTD194-195aerobic powerRenewable energy sourcesJUDÔ03 medical and health sciences0302 clinical medicinerespiratory functionRespiratory functionGE1-35010. No inequalityeducationAerobic power; Arterial hypertension; Bone mineral density; Cardiac remodeling; Obesity; Respiratory functionHealth implicationseducation.field_of_studyMartial artsbiologyEnvironmental effects of industries and plantsRenewable Energy Sustainability and the EnvironmentAthletes030229 sport sciencesbiology.organism_classificationEnvironmental sciencescardiac remodelingPsychologybone mineral densityAnaerobic exerciseInclusion (education)human activities030217 neurology & neurosurgerySustainability
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Verlaufsbeobachtung des Kollagen- und Knochenstoffwechsels bei Patienten mit zementfreier Hüfttotalendoprothese*

2008

Introduction This study investigated the influence of concentration and activity of several markers of the collagen and bone metabolism and their impact on ingrowth of non-cemented total hip arthroplasty. Methods 40 patients underwent an implantation of a ABG-prosthesis. Before surgery and 1, 2, 12 and 24 weeks after it serum concentrations of PICP, ICTP, IGF-1, ON, b-AP, Calcium, Phosphate, GPT and Creatinin were measured and a collagen ratio (CQ) was calculated. Results PICP decreased until 1st week, increased at 2nd week and decreased again after that time. ICTP increased significantly in 1st week, reached a maximum in 2nd week and decreased after that. b-AP decreased in 1st week but inc…

Hip surgerymedicine.medical_specialtybusiness.industrymedicine.medical_treatmentUrologychemistry.chemical_elementOsteoarthritisCalciummedicine.diseaseArthroplastyOsseointegrationSurgeryBone remodelingchemistryOrthopedic surgeryMedicineOrthopedics and Sports MedicineSurgeryIn patientbusinessZeitschrift für Orthopädie und ihre Grenzgebiete
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Dissection of keratin dynamics: different contributions of the actin and microtubule systems.

2005

It has only recently been recognized that intermediate filaments (IFs) and their assembly intermediates are highly motile cytoskeletal components with cell-type- and isotype-specific characteristics. To elucidate the cell-type-independent contribution of actin filaments and microtubules to these motile properties, fluorescent epithelial IF keratin polypeptides were introduced into non-epithelial, adrenal cortex-derived SW13 cells. Time-lapse fluorescence microscopy of stably transfected SW13 cell lines synthesizing fluorescent human keratin 8 and 18 chimeras HK8-CFP and HK18-YFP revealed extended filament networks that are entirely composed of transgene products and exhibit the same dynamic…

HistologyRecombinant Fusion ProteinsArp2/3 complexAntineoplastic Agentsmacromolecular substancesBiologyMicrotubulesPathology and Forensic MedicineGenes ReporterKeratinHumansIntermediate filamentCytoskeletonchemistry.chemical_classificationKeratin FilamentNocodazoleActin remodelingCell BiologyGeneral MedicineBridged Bicyclo Compounds HeterocyclicActinsCell biologyActin CytoskeletonProtein TransportThiazoleschemistryMicroscopy Fluorescencebiology.proteinKeratin 8KeratinsThiazolidinesLamellipodiumEuropean journal of cell biology
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Redox signaling and histone acetylation in acute pancreatitis

2011

Histone acetylation via CBP/p300 coordinates the expression of proinflammatory cytokines in the activation phase of inflammation, particularly through mitogen-activated protein kinases (MAPKs), nuclear factor-κB (NF-κB), and signal transducers and activators of transcription (STAT) pathways. In contrast, histone deacetylases (HDACs) and protein phosphatases are mainly involved in the attenuation phase of inflammation. The role of reactive oxygen species (ROS) in the inflammatory cascade is much more important than expected. Mitochondrial ROS act as signal-transducing molecules that trigger proinflammatory cytokine production via inflammasome-independent and inflammasome-dependent pathways. …

Histone AcetyltransferasesMitochondrial ROSAcetylationProtein tyrosine phosphataseBiologyEndoplasmic Reticulum StressBiochemistryChromatin remodelingProinflammatory cytokineHistonesOxidative StressHistoneGene Expression RegulationPancreatitisAcetylationPhysiology (medical)Acute Diseasebiology.proteinCancer researchAnimalsHumansPhosphorylationOxidation-ReductionProtein Processing Post-TranslationalSignal TransductionFree Radical Biology and Medicine
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Protein phosphatases and chromatin modifying complexes in the inflammatory cascade in acute pancreatitis

2010

Acute pancreatitis is an inflammation of the pancreas that may lead to systemic inflammatory response syndrome and death due to multiple organ failure. Acinar cells, together with leukocytes, trigger the inflammatory cascade in response to local damage of the pancreas. Amplification of the inflammatory cascade requires up-regulation of pro-inflammatory cytokines and this process is mediated not only by nuclear factor κB but also by chromatin modifying complexes and chromatin remodeling. Among the different families of histone acetyltransferases, the p300/CBP family seems to be particularly associated with the inflammatory process. cAMP activates gene expression via the cAMP-responsive eleme…

Histone deacetylase 5biologyHistone methyltransferaseHistone H2Abiology.proteinCancer researchHistone acetyltransferaseHistone deacetylaseTopic HighlightSAP30CREBChromatin remodeling
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IL-17A induces chromatin remodeling promoting IL-8 and TSLP release in bronchial epithelial cells. Effect of Tiotropium.

IL-17A COPD IL-8 chromatin remodeling
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Regulation of ISWI-family of chromatin remodelling Complexes

2013

The packaging of DNA into chromatin facilitates the storage of the genetic information within the nucleus but prevents the access to the underlying sequences. The evolutionarily conserved ISWI family of ATP-dependent chromatin remodelling complexes provide one of the regulatory mechanisms that eukaryotic cells have evolved to induce structural changes to chromatin. All ISWI-containing complexes use the energy derived from ATP hydrolysis in order to rearrange nucleosomes on chromatin to carry specific nuclear reactions. The combination of associated proteins with the ATPase subunit as well as specific histone modifications specialize the nuclear function of each ISWI-containing complex. Here…

ISWI Chromatin Remodeling Regulation
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