Autophagy in Myf5+ progenitors regulates energy and glucose homeostasis through control of brown fat and skeletal muscle development.
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Of mice and men: novel insights regarding constitutive and recruitable brown adipocytesThe Role of Organelle Stresses in Diabetes Mellitus and Obesity: Implication for TreatmentAutophagy and agingProteINSIDE to Easily Investigate Proteomics Data from Ruminants: Application to Mine Proteome of Adipose and Muscle Tissues in Bovine Foetuses.Identification of MyoD-Responsive Transcripts Reveals a Novel Long Non-coding RNA (lncRNA-AK143003) that Negatively Regulates Myoblast DifferentiationInsulin and LiCl synergistically rescue myogenic differentiation of FoxO1 over-expressed myoblastsAutophagy in the CNS and Periphery Coordinate Lipophagy and Lipolysis in the Brown Adipose Tissue and LiverEmerging Complexities in Adipocyte Origins and Identity.Molecular regulation of autophagy and its implications for metabolic diseases.PPARGC1α gene DNA methylation variations in human placenta mediate the link between maternal hyperglycemia and leptin levels in newborns.Autophagy--a key player in cellular and body metabolism.Regulation of adipocyte lipolysis.Autophagy at the crossroads of catabolism and anabolism.Autophagy is required and protects against apoptosis during myoblast differentiation.Autophagy proteins regulate ERK phosphorylation.Mitochondrial homeostasis in adipose tissue remodeling.Paracrine, endocrine and neurocrine controls of the adipocyte color phenotype: view from the chair.Induction of autophagy supports the bioenergetic demands of quiescent muscle stem cell activation.Rictor/mTORC2 loss in the Myf5 lineage reprograms brown fat metabolism and protects mice against obesity and metabolic diseaseThermogenic activation represses autophagy in brown adipose tissue.The Role of Autophagy in Systemic Metabolism and Human-Type Diabetes.System-wide Benefits of Intermeal Fasting by Autophagy.Lamina-associated polypeptide 1 is dispensable for embryonic myogenesis but required for postnatal skeletal muscle growth.
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Autophagy in Myf5+ progenitors regulates energy and glucose homeostasis through control of brown fat and skeletal muscle development.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 02 August 2013
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
@en
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
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type
label
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
@en
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
@nl
prefLabel
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
@en
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
@nl
P2093
P2860
P921
P356
P1433
P1476
Autophagy in Myf5+ progenitors ...... d skeletal muscle development.
@en
P2093
Diana Athonvarangkul
Gary J Schwartz
Haihong Zong
Jeffrey E Pessin
Luisa Coletto
Nuria Martinez-Lopez
Rajat Singh
Srabani Sahu
P2860
P304
P356
10.1038/EMBOR.2013.111
P577
2013-08-02T00:00:00Z