Abstract

Elevated serum free fatty acids (FFAs) and hepatocyte lipoapoptosis are features of non-alcoholic fatty liver disease. However, the mechanism by which FFAs mediate lipoapoptosis is unclear. Because JNK activation is pivotal in both the metabolic syndrome accompanying non-alcoholic fatty liver disease and cellular apoptosis, we examined the role of JNK activation in FFA-induced lipoapoptosis. Multiple hepatocyte cell lines and primary mouse hepatocytes were treated in culture with monounsaturated fatty acids and saturated fatty acids. Despite equal cellular steatosis, apoptosis and JNK activation were greater during exposure to saturated versus monounsaturated FFAs. Inhibition of JNK, pharmacologically as well as genetically, reduced saturated FFA-mediated hepatocyte lipoapoptosis. Cell death was caspase-dependent and associated with mitochondrial membrane depolarization and cytochrome c release indicating activation of the mitochondrial pathway of apoptosis. JNK-dependent lipoapoptosis was associated with activation of Bax, a known mediator of mitochondrial dysfunction. As JNK can activate Bim, a BH3 domain-only protein capable of binding to and activating Bax, its role in lipoapoptosis was also examined. Small interfering RNA-targeted knock-down of Bim attenuated both Bax activation and cell death. Collectively the data indicate that saturated FFAs induce JNK-dependent hepatocyte lipoapoptosis by activating the proapoptotic Bcl-2 proteins Bim and Bax, which trigger the mitochondrial apoptotic pathway.

Highlights

  • As Bid activation was not observed (Fig. 4A), we focused on Bim in free fatty acids (FFAs)-mediated lipoapoptosis

  • The principal findings of this study relate to the mechanism of FFAinduced hepatocyte lipoapoptosis

  • The data demonstrate that (i) saturated FFAs are more cytotoxic than monounsaturated FFAs, (ii) FFA cytotoxicity occurs via caspase-dependent apoptosis, and (iii) Jun NH2-terminal kinase (JNK) triggers the mitochondrial pathway of apoptosis by Bim-dependent Bax activation

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Summary

Introduction

Direct evidence for hepatocyte lipoapoptosis by individual FFAs is lacking as is the potential mechanism by which they may engage the cellular apoptotic machinery. The JNK pathway contributes to stress-induced apoptosis in several cell types, including pancreatic ␤-cells, neurons, and hepatocytes [7,8,9]. Sustained JNK2 and JNK3 activation are cytotoxic in neurons [11], whereas JNK1 potentiates hepatocyte apoptosis by the toxic bile acid deoxycholate [9]. The dual objectives of this study were to determine whether individual free fatty acids induce hepatocyte apoptosis and whether the observed lipoapoptosis is JNK-dependent. We induced steatosis in cultured hepatocytes and demonstrated apoptotic cell death with free fatty acid treatment. Sustained JNK activation was a prominent feature of this lipoapoptosis, and inhibition of JNK abrogated hepatocyte lipotoxicity

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