Search results for "PGC"

showing 6 items of 26 documents

Hsp60 levels and mitochondrial biogenesis in skeletal muscle after endurance training

Settore BIO/16 - Anatomia UmanaSKELETAL MUSCLE MUSCLE WASTING CACHEXIA ENDURANCE TRAINING Hsp60 PGC1alpha.
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PGC-1α: a master gene that is hard to master

2012

Peroxisome proliferator-activated receptor-γ coactivator-1α (PGC-1α) is a transcriptional coactivator that favorably affects mitochondrial function. This concept is supported by an increasing amount of data including studies in PGC-1α gene-deleted mice, suggesting that PGC-1α is a rescue factor capable of boosting cell metabolism and promoting cell survival. However, this view has now been called into question by a recent study showing that adeno-associated virus-mediated PGC-1α overexpression causes overt cell degeneration in dopaminergic neurons. How is this to be understood, and can these seemingly conflicting findings tell us something about the role of PGC-1α in cell stress and in cont…

medicine.medical_specialtyModels NeurologicalSettore BIO/11 - Biologia MolecolareRNA-binding proteinBiologyMitochondrionSettore BIO/09 - FisiologiaMiceCellular and Molecular NeuroscienceHeat shock proteinInternal medicinemedicineAnimalsHomeostasisHumansReceptorMolecular BiologyTranscription factorHeat-Shock ProteinsMice KnockoutPharmacologyPGC-1α Mitochondria Dopaminergic neurons Transgenic animal Adenovirus Parkinson’s diseaseDopaminergic NeuronsDopaminergicRNA-Binding ProteinsParkinson DiseaseCell BiologyPeroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alphaMitochondriaEndocrinologyCell metabolismNerve DegenerationTrans-ActivatorsMolecular MedicineNeuroscienceHomeostasisTranscription FactorsCellular and Molecular Life Sciences
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PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise

2015

The primary aim of the present study was to investigate the acute gene expression responses of PGC-1 isoforms and PGC-1a target genes related to mitochondrial biogenesis (cytochrome C), angiogenesis (VEGF-A), and muscle hypertrophy (myostatin), after a resistance or endurance exercise bout. In addition, the study aimed to elucidate whether the expression changes of studied transcripts were linked to phosphorylation of AMPK and MAPK p38. Nineteen physically active men were divided into resistance exercise (RE, n = 11) and endurance exercise (EE, n = 8) groups. RE group performed leg press exercise (10 9 10 RM, 50 min) and EE walked on a treadmill (~80% HRmax, 50 min). Muscle biopsies were ob…

medicine.medical_specialtybiologysplice variantPhysiologyVastus lateralis musclePGC-1αphysical activitySkeletal muscleta3141MyostatinMuscle hypertrophyExonmedicine.anatomical_structureEndocrinologyPGC1-1βMitochondrial biogenesisEndurance trainingPhysiology (medical)Internal medicineGene expressionmedicinebiology.proteinta315Original ResearchPhysiological Reports
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Implicación de los microARNs en la hipertensión pulmonar idiopática. Regulación farmacológica

2014

La hipertensión pulmonar (HP) es un desorden complejo que se caracteriza por un aumento progresivo de la presión arterial pulmonar, ocasionado por el remodelado de las arterias pulmonares de pequeño calibre, que origina un aumento de resistencias pulmonares y como consecuencia sobrecarga y fallo del ventrículo derecho que puede llevar al fallecimiento del paciente. La Organización mundial de la salud la clasifica en 5 grupos, en nuestro estudio nos hemos centrado en el grupo I, que se caracteriza por la afección de los vasos pulmonares de pequeño calibre, con una presión arterial pulmonar (PAP) media de ≥ 25 mmHg y ausencia de causas secundarias, este así mismo se subdivide en hipertensión …

mir-23a:CIENCIAS TECNOLÓGICAS [UNESCO]PPARyPGC-1αhipertensión pulmonar idiopáticaHPAIUNESCO::CIENCIAS TECNOLÓGICASTGFß1ciglitazonamicroarnsET1microarrayshipertensión pulmonar
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Il trattamento con RSV e l’espressione transgenica di PGC-1α proteggono i neuroni dopaminergici nel modello MPTP murino del morbo di Parkinson. Resve…

2012

neuroni dopaminergiciRSVPGC-1αParkinson.Settore BIO/09 - FisiologiaMPTP
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The Role of the Skeletal Muscle Secretome in Mediating Endurance and Resistance Training Adaptations

2021

Exercise, in the form of endurance or resistance training, leads to specific molecular and cellular adaptions not only in skeletal muscles, but also in many other organs such as the brain, liver, fat or bone. In addition to direct effects of exercise on these organs, the production and release of a plethora of different signaling molecules from skeletal muscle are a centerpiece of systemic plasticity. Most studies have so far focused on the regulation and function of such myokines in acute exercise bouts. In contrast, the secretome of long-term training adaptation remains less well understood, and the contribution of non-myokine factors, including metabolites, enzymes, microRNAs or mitochon…

secretomeexerciseendurance trainingPhysiologymyokinesQP1-981Reviewskeletal muscleresistance trainingPGC-1alpha
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