HCV life cycle is strictly correlated with the hepatocyte lipid metabolism; moreover, the progression of HCV chronic hepatitis is accelerated by the presence of liver steatosis. Among the steatogenic genes deregulated during the HCV infection one of the most attractive is the Small Heterodimer Protein 1 (SHP1; NR0B2), that is involved in a remarkable number of metabolic functions. HCV NS5A is an essential and integral component of the HCV membranous-web replicon complex (RC) and plays an essential role to transfer the viral genome from the RCs to the surface of the lipid droplets (LDs) that, in turn, play a key function during HCV life cycle. With the help of a HCV infection model, we demonstrate a functional interaction between SHP1 and HCV NS5A protein. SHP1 silencing (siSHP1) reversed the prooncogenic effects of HCV infection, inducing a significant decrease in liver lipid accumulation and in NS5A protein expression. Moreover, siSHP1 causes a strong modulation of some genes involved in HCV-related EMT, such as: HNF4, a central regulators of hepatocyte differentiation, E-Cadherin, SNAILs. Our data suggest that SHP1 results not only to be strictly connected to the pathogenesis of HCV-related liver steatosis, but also to its progression towards the liver transformation

Small heterodimer partner 1 directly interacts with NS5A viral protein and has a key role in HCV related liver cell transformation / Conti, Beatrice; Porcu, Cristiana; Viscomi, Carmela; Minutolo, Antonella; Costantini, Susan; Corazzari, Marco; Iannucci, Gino; Barbaro, Barbara; Balsano, Clara. - In: ONCOTARGET. - ISSN 1949-2553. - STAMPA. - 7:51(2016), pp. 84575-84586. [10.18632/oncotarget.12144]

Small heterodimer partner 1 directly interacts with NS5A viral protein and has a key role in HCV related liver cell transformation

CONTI, BEATRICE;PORCU, CRISTIANA;IANNUCCI, Gino;BARBARO, Barbara;BALSANO, Clara
2016

Abstract

HCV life cycle is strictly correlated with the hepatocyte lipid metabolism; moreover, the progression of HCV chronic hepatitis is accelerated by the presence of liver steatosis. Among the steatogenic genes deregulated during the HCV infection one of the most attractive is the Small Heterodimer Protein 1 (SHP1; NR0B2), that is involved in a remarkable number of metabolic functions. HCV NS5A is an essential and integral component of the HCV membranous-web replicon complex (RC) and plays an essential role to transfer the viral genome from the RCs to the surface of the lipid droplets (LDs) that, in turn, play a key function during HCV life cycle. With the help of a HCV infection model, we demonstrate a functional interaction between SHP1 and HCV NS5A protein. SHP1 silencing (siSHP1) reversed the prooncogenic effects of HCV infection, inducing a significant decrease in liver lipid accumulation and in NS5A protein expression. Moreover, siSHP1 causes a strong modulation of some genes involved in HCV-related EMT, such as: HNF4, a central regulators of hepatocyte differentiation, E-Cadherin, SNAILs. Our data suggest that SHP1 results not only to be strictly connected to the pathogenesis of HCV-related liver steatosis, but also to its progression towards the liver transformation
2016
HCC; HCV; liver steatosis; NS5A; SHP1; oncology
01 Pubblicazione su rivista::01a Articolo in rivista
Small heterodimer partner 1 directly interacts with NS5A viral protein and has a key role in HCV related liver cell transformation / Conti, Beatrice; Porcu, Cristiana; Viscomi, Carmela; Minutolo, Antonella; Costantini, Susan; Corazzari, Marco; Iannucci, Gino; Barbaro, Barbara; Balsano, Clara. - In: ONCOTARGET. - ISSN 1949-2553. - STAMPA. - 7:51(2016), pp. 84575-84586. [10.18632/oncotarget.12144]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/963869
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