Pages that link to "Q40383404"
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The following pages link to miR-155 regulates differentiation of brown and beige adipocytes via a bistable circuit. (Q40383404):
Displaying 50 items.
- Milk is not just food but most likely a genetic transfection system activating mTORC1 signaling for postnatal growth (Q24594618) (← links)
- What induces watts in WAT? (Q26744143) (← links)
- Of mice and men: novel insights regarding constitutive and recruitable brown adipocytes (Q26751902) (← links)
- Vascular repair strategies in type 2 diabetes: novel insights (Q26778658) (← links)
- Intricate Transcriptional Networks of Classical Brown and Beige Fat Cells (Q26796204) (← links)
- Regulatory networks of non-coding RNAs in brown/beige adipogenesis (Q26797440) (← links)
- MicroRNA Functions in Brite/Brown Fat - Novel Perspectives towards Anti-Obesity Strategies (Q26830503) (← links)
- Regulation of Adipocyte Differentiation via MicroRNAs (Q26859278) (← links)
- MicroRNA networks regulate development of brown adipocytes (Q26862972) (← links)
- MiR-155 Enhances Insulin Sensitivity by Coordinated Regulation of Multiple Genes in Mice (Q27307894) (← links)
- A genome-scale screen reveals context-dependent ovarian cancer sensitivity to miRNA overexpression (Q28611264) (← links)
- Stimulation of soluble guanylyl cyclase protects against obesity by recruiting brown adipose tissue (Q30316523) (← links)
- Altered miRNA processing disrupts brown/white adipocyte determination and associates with lipodystrophy (Q33944314) (← links)
- Syndecan-1 is required to maintain intradermal fat and prevent cold stress (Q34015240) (← links)
- KSRP ablation enhances brown fat gene program in white adipose tissue through reduced miR-150 expression (Q34077397) (← links)
- MicroRNA-378 controls classical brown fat expansion to counteract obesity (Q34206473) (← links)
- Transcriptional and epigenetic control of brown and beige adipose cell fate and function. (Q34529253) (← links)
- MicroRNAs are required for the feature maintenance and differentiation of brown adipocytes. (Q34545521) (← links)
- MicroRNA 34a inhibits beige and brown fat formation in obesity in part by suppressing adipocyte fibroblast growth factor 21 signaling and SIRT1 function (Q34592713) (← links)
- Chromosome 21-derived hsa-miR-155-5p regulates mitochondrial biogenesis by targeting Mitochondrial Transcription Factor A (TFAM). (Q34669291) (← links)
- Overexpression of miR-155 in the liver of transgenic mice alters the expression profiling of hepatic genes associated with lipid metabolism (Q35208224) (← links)
- De Novo Reconstruction of Adipose Tissue Transcriptomes Reveals Long Non-coding RNA Regulators of Brown Adipocyte Development (Q35601096) (← links)
- Midbrain dopamine neurons in Parkinson's disease exhibit a dysregulated miRNA and target-gene network (Q35654904) (← links)
- Comparative analysis of microRNA expression in mouse and human brown adipose tissue. (Q35813473) (← links)
- Role of microRNA biogenesis in adipocyte and lipodystrophy (Q35834842) (← links)
- High-Throughput Sequencing Reveals Circulating miRNAs as Potential Biomarkers for Measuring Puberty Onset in Chicken (Gallus gallus). (Q36009702) (← links)
- MicroRNAs in Breastmilk and the Lactating Breast: Potential Immunoprotectors and Developmental Regulators for the Infant and the Mother (Q36324033) (← links)
- The miRNA Interactome in Metabolic Homeostasis (Q36355502) (← links)
- miR-155 Deletion in Female Mice Prevents Diet-Induced Obesity (Q36661907) (← links)
- The Gq signalling pathway inhibits brown and beige adipose tissue (Q36675161) (← links)
- MicroRNA-155 deletion promotes tumorigenesis in the azoxymethane-dextran sulfate sodium model of colon cancer (Q36698800) (← links)
- Dysfunctional Subcutaneous Fat With Reduced Dicer and Brown Adipose Tissue Gene Expression in HIV-Infected Patients (Q36716054) (← links)
- Obesity-associated Inflammation Induces microRNA-155 Expression in Adipocytes and Adipose Tissue: Outcome on Adipocyte Function (Q36935496) (← links)
- Fasting induces a subcutaneous-to-visceral fat switch mediated by microRNA-149-3p and suppression of PRDM16. (Q36974081) (← links)
- MicroRNA-34a and Impaired FGF19/21 Signaling in Obesity (Q37160100) (← links)
- NF-κB-driven suppression of FOXO3a contributes to EGFR mutation-independent gefitinib resistance. (Q37173070) (← links)
- Fto-Deficiency Affects the Gene and MicroRNA Expression Involved in Brown Adipogenesis and Browning of White Adipose Tissue in Mice. (Q37465519) (← links)
- Interfacial Adipose Tissue in Systemic Sclerosis (Q37616390) (← links)
- Shortcuts to a functional adipose tissue: The role of small non-coding RNAs. (Q37645670) (← links)
- Leucine deprivation inhibits proliferation and induces apoptosis of human breast cancer cells via fatty acid synthase (Q37665432) (← links)
- Adipose tissue browning and metabolic health (Q38154504) (← links)
- The different shades of fat. (Q38217767) (← links)
- Molecular pathways regulating the formation of brown-like adipocytes in white adipose tissue (Q38241502) (← links)
- MicroRNA regulatory networks in human adipose tissue and obesity. (Q38366874) (← links)
- The role of microRNA in nutritional control (Q38400255) (← links)
- Opportunities and challenges in three-dimensional brown adipogenesis of stem cells (Q38558581) (← links)
- Brown and Beige Fat: Physiological Roles beyond Heat Generation (Q38601606) (← links)
- Zinc transporter ZIP13 suppresses beige adipocyte biogenesis and energy expenditure by regulating C/EBP-β expression (Q38602160) (← links)
- Body Temperature Measurements for Metabolic Phenotyping in Mice (Q38616788) (← links)
- MicroRNA-455 regulates brown adipogenesis via a novel HIF1an-AMPK-PGC1α signaling network. (Q38622576) (← links)