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1.
Artigo em Inglês | MEDLINE | ID: mdl-33582286

RESUMO

Inflammation is a constant in Non-Alcoholic Fatty Liver Disease (NAFLD), although their relationship is unclear. In a transgenic zebrafish system with chronic systemic overexpression of human IL6 (IL6-OE) we show that inflammation can cause intra-hepatic accumulation of triglycerides. Transcriptomics and proteomics analysis of the IL6-OE liver revealed a deregulation of glycolysis/gluconeogenesis pathway, especially a striking down regulation of the glycolytic enzyme aldolase b. Metabolomics analysis by mass spectrometry showed accumulation of hexose monophosphates and their derivatives, which can act as precursors for triglyceride synthesis. Our results suggest that IL6-driven repression of glycolysis/gluconeogenesis, specifically aldolase b, may be a novel mechanism for fatty liver. This mechanism may be relevant for NAFLD in lean individuals, an emerging class of NAFLD prevalent more in Asian Indian populations.


Assuntos
Animais Geneticamente Modificados , Glicólise/genética , Interleucina-6 , Metabolismo dos Lipídeos/genética , Fígado/metabolismo , Peixe-Zebra , Animais , Animais Geneticamente Modificados/genética , Animais Geneticamente Modificados/metabolismo , Células Hep G2 , Humanos , Interleucina-6/biossíntese , Interleucina-6/genética , Peixe-Zebra/genética , Peixe-Zebra/metabolismo
2.
Pharmacogenomics ; 19(3): 227-241, 2018 02.
Artigo em Inglês | MEDLINE | ID: mdl-29239269

RESUMO

AIM: Adverse drug reactions to 5-Fluorouracil(5-FU) is frequent and largely attributable to genetic variations in the DPYD gene, a rate limiting enzyme that clears 5-FU. The study aims at understanding the pharmacogenetic landscape of DPYD variants in south Asian populations. MATERIALS & METHODS: Systematic analysis of population scale genome wide datasets of over 3000 south Asians was performed. Independent evaluation was performed in a small cohort of patients. RESULTS: Our analysis revealed significant differences in the the allelic distribution of variants in different ethnicities. CONCLUSIONS: This is the first and largest genetic map the DPYD variants associated with adverse drug reaction to 5-FU in south Asian population. Our study highlights ethnic differences in allelic frequencies.


Assuntos
Antimetabólitos Antineoplásicos/toxicidade , Di-Hidrouracila Desidrogenase (NADP)/genética , Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos/genética , Fluoruracila/toxicidade , Farmacogenética , Polimorfismo de Nucleotídeo Único , Adolescente , Adulto , Idoso , Idoso de 80 Anos ou mais , Povo Asiático/genética , Estudos de Coortes , Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos/enzimologia , Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos/etiologia , Feminino , Frequência do Gene , Humanos , Masculino , Pessoa de Meia-Idade , População Branca/genética , Adulto Jovem
3.
Sci Rep ; 7(1): 8312, 2017 08 16.
Artigo em Inglês | MEDLINE | ID: mdl-28814771

RESUMO

Liver plays a key role in maintaining glucose homeostasis and impaired hepatic glucose metabolism is associated with type 2 diabetes. In the present study, we used RNA sequencing to profile the transcriptome of the livers of diabetic db/db mice as compared to the normal db/+ mice and identified 218 differentially expressed genes. Amongst these, there were 3 lncRNAs that were significantly downregulated and H19 was the most altered lncRNA in the livers of db/db mice. H19 expression significantly correlated with the expression of genes of the glycolysis and gluconeogenesis pathways, which suggest that altered hepatic H19 levels can directly or indirectly modulate their expression. Inhibition of H19 using specific siRNA in HepG2 cells and primary mouse hepatocytes significantly increased the levels of gluconeogenic genes. This was subsequently accompanied by increased hepatic glucose output. Further,H19 depletion in HepG2 cells impaired insulin signaling and increased nuclear localization of FoxO1, an important transcriptional regulator of gluconeogenic gene expression. Our results reveal a novel link between decreased H19 levels and impaired gluconeogenesis via regulation of FoxO1 nuclear levels. These put forth interesting observations on the regulatory role of H19 in altering hepatic physiology during diabetes.


Assuntos
Gluconeogênese/genética , Glucose/metabolismo , Fígado/metabolismo , RNA Longo não Codificante/genética , Animais , Linhagem Celular , Proteína Forkhead Box O1/metabolismo , Perfilação da Expressão Gênica , Regulação da Expressão Gênica , Glicólise , Hepatócitos/metabolismo , Humanos , Insulina/metabolismo , Masculino , Camundongos , Camundongos Transgênicos , Transporte Proteico , Transdução de Sinais , Transcriptoma
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