The longevity transporter mIndy (Slc13a5) as a target for treating hepatic steatosis and insulin resistance.
نویسندگان
چکیده
gene in Drosophila melanogaster and Caenhorabditis elegans extends lifespan in most [1-6], but not all [7], studies. Reducing Indy affects PGC-1α [4] [5] and AMPK signaling [6], leading to reduced whole body fat content and insulin-like proteins [2, 3, 6], as well as an increase in mitochondrial biogenesis [4]. Indy and its mammalian homolog mIndy (SLC13A5, NaCT) are transporters of TCA cycle intermediates, handling the uptake of citrate and other dicarboxylates via the plasma membrane into the cytosol [8, 9]. In mammals, deletion of mIndy protected mice from diet-and aging-induced obesity and insulin resistance. The association of mIndy with fat and glucose metabolism in the liver has been further implicated by the demonstration that glucagon acts as a hormonal regulator of the mIndy gene, inducing mIndy expression via a CREB-dependent mechanism in rats [10]. Similarly, activation of the aryl hydrocarbon receptor (AhR) [11] induced mIndy in rat hepatocytes. Activation of AhR leads to fatty liver disease. Moreover, reducing mIndy in human hepatocytes with siRNA leads to a decrease in cellular lipid content. Together, these data suggested that hepatic mIndy is involved in the regulation of hepatic intermediary lipid and glucose metabolism and could be a useful target for the treatment of hepatic insulin resistance and fatty liver disease. In a recent report in Aging, the targeting of mIndy as a therapeutic measure for reducing fatty liver has now been demonstrated in a mammalian model in vivo. Pesta et al. [12] investigated the effect of knockdown of mIndy using 2'-O-methoxyethyl chimeric anti-sense oligonucleotides (ASOs), an approach for reducing gene expression specifically in the liver [13]. The intervention reduced hepatic mIndy mRNA expression by 91%, and led to a significant reduction of liver fat content. Moreover, plasma triglycerides were reduced by 35% and overall and hepatic insulin sensitivity was improved, as assessed by the hyperinsulinemic-euglycemic clamp technique [12]. Interestingly, these benefits occurred independent of changes in body weight. The approach chosen by Pesta et al. mimics a therapeutic setting, since the application of ASOs leads Letters to Editors to an inducible knockdown of the target gene in vivo. It was not certain, however, that the reduction of citrate uptake by the deletion of mIndy was responsible for the beneficial effects on the liver. A new study by Huard et al. [14], describing the first competitive inhibitor of citrate uptake via mINDY suggests that the inhibition of carboxylic acid uptake is responsible for …
منابع مشابه
INDY—A New Link to Metabolic Regulation in Animals and Humans
The Indy (I'm Not Dead Yet) gene encodes the fly homolog of the mammalian SLC13A5 citrate transporter. Reduced expression of the Indy gene in flies and worms extends their longevity. INDY is expressed in the plasma membrane of metabolically active tissues. Decreased expression of Indy in worms, flies, mice, and rats alters metabolism in a manner similar to calorie restriction. Reducing INDY act...
متن کاملInhibition of citrate cotransporter Slc13a5/mINDY by RNAi improves hepatic insulin sensitivity and prevents diet-induced non-alcoholic fatty liver disease in mice
OBJECTIVE Non-alcoholic fatty liver disease is a world-wide health concern and risk factor for cardio-metabolic diseases. Citrate uptake modifies intracellular hepatic energy metabolism and is controlled by the conserved sodium-dicarboxylate cotransporter solute carrier family 13 member 5 (SLC13A5, mammalian homolog of INDY: mINDY). In Drosophila melanogaster and Caenorhabditis elegans INDY red...
متن کاملThe role of INDY in metabolism, health and longevity
Indy (I'm Not Dead Yet) encodes the fly homolog of a mammalian SLC13A5 plasma membrane transporter. INDY is expressed in metabolically active tissues functioning as a transporter of Krebs cycle intermediates with the highest affinity for citrate. Decreased expression of the Indy gene extends longevity in Drosophila and C. elegans. Reduction of INDY or its respective homologs in C. elegans and m...
متن کاملSilencing of solute carrier family 13 member 5 disrupts energy homeostasis and inhibits proliferation of human hepatocarcinoma cells.
The solute carrier family 13 member 5 (SLC13A5), a sodium-coupled citrate transporter, plays a key role in importing citrate from the circulation into liver cells. Recent evidence has revealed that SLC13A5 deletion protects mice from high-fat diet-induced hepatic steatosis and that mutation of the SLC13A5 orthologues in Drosophila melanogaster and Caenorhabditis elegans promotes longevity. Howe...
متن کاملInhibition of hepatic Niemann-Pick C1-like 1 improves hepatic insulin resistance.
The present study attempted to define the role of hepatic Niemann-Pick C1-like 1 (NPC1L1), a cholesterol transporter, in hepatic insulin resistance as well as hepatic steatosis. The inhibition of NPC1L1 and its molecular consequences were examined in Zucker obese fatty (ZOF) rats and cultured steatotic hepatocytes using ezetimibe, a pharmacoloigcal inhibitor of NPC1L1, and short hairpin RNA (sh...
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عنوان ژورنال:
- Aging
دوره 8 2 شماره
صفحات -
تاریخ انتشار 2016