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Updated: Mar 18, 2026

Optimized Analysis of In Vivo and In Vitro Hepatic Steatosis
Published on: March 11, 2017
TTC39B deficiency stabilizes LXR reducing both atherosclerosis and steatohepatitis
Joanne Hsieh1, Masahiro Koseki1,2, Matthew M Molusky1
1Division of Molecular Medicine, Department of Medicine, Columbia University, New York, New York 10032, USA.
Abstract:
Cellular mechanisms that mediate steatohepatitis, an increasingly prevalent condition in the Western world for which no therapies are available, are poorly understood. Despite the fact that its synthetic agonists induce fatty liver, the liver X receptor (LXR) transcription factor remains a target of interest because of its anti-atherogenic, cholesterol removal, and anti-inflammatory activities. Here we show that tetratricopeptide repeat domain protein 39B (Ttc39b, C9orf52) (T39), a high-density lipoprotein gene discovered in human genome-wide association studies, promotes the ubiquitination and degradation of LXR. Chow-fed mice lacking T39 (T39(-/-)) display increased high-density lipoprotein cholesterol levels associated with increased enterocyte ATP-binding cassette transporter A1 (Abca1) expression and increased LXR protein without change in LXR messenger RNA. When challenged with a high fat/high cholesterol/bile salt diet, T39(-/-) mice or mice with hepatocyte-specific T39 deficiency show increased hepatic LXR protein and target gene expression, and unexpectedly protection from steatohepatitis and death. Mice fed a Western-type diet and lacking low-density lipoprotein receptor (Ldlr(-/-)T39(-/-)) show decreased fatty liver, increased high-density lipoprotein, decreased low-density lipoprotein, and reduced atherosclerosis. In addition to increasing hepatic Abcg5/8 expression and limiting dietary cholesterol absorption, T39 deficiency inhibits hepatic sterol regulatory element-binding protein 1 (SREBP-1, ADD1) processing. This is explained by an increase in microsomal phospholipids containing polyunsaturated fatty acids, linked to an LXRα-dependent increase in expression of enzymes mediating phosphatidylcholine biosynthesis and incorporation of polyunsaturated fatty acids into phospholipids. The preservation of endogenous LXR protein activates a beneficial profile of gene expression that promotes cholesterol removal and inhibits lipogenesis. T39 inhibition could be an effective strategy for reducing both steatohepatitis and atherosclerosis.
Insights
Tetratricopeptide repeat domain protein 39B (T39) promotes liver X receptor (LXR) degradation. Inhibiting T39 protects against steatohepatitis and atherosclerosis by preserving LXR activity.
Area of Science:
- Metabolic diseases
- Molecular biology
- Genetics
Background:
- Steatohepatitis is a prevalent liver condition with no available therapies.
- Liver X receptor (LXR) has beneficial cholesterol removal and anti-inflammatory properties, but its agonists can induce fatty liver.
- Understanding cellular mechanisms of steatohepatitis is crucial for developing treatments.
Purpose of the Study:
- To investigate the role of tetratricopeptide repeat domain protein 39B (Ttc39b, T39) in regulating liver X receptor (LXR).
- To determine the therapeutic potential of targeting T39 for steatohepatitis and atherosclerosis.
Main Methods:
- Utilized knockout mouse models (T39(-/-), hepatocyte-specific T39 deficiency, Ldlr(-/-)T39(-/-)).
- Administered various diets including high fat/high cholesterol/bile salt and Western-type diets.
- Analyzed high-density lipoprotein (HDL) cholesterol, LXR protein and mRNA levels, hepatic gene expression, and atherosclerosis markers.
Main Results:
- T39 deficiency increased HDL cholesterol and protected against diet-induced steatohepatitis and death in mice.
- T39 deficiency reduced fatty liver, decreased low-density lipoprotein (LDL), and ameliorated atherosclerosis in Ldlr(-/-)T39(-/-) mice.
- T39 deficiency preserved hepatic LXR protein, leading to increased cholesterol removal and reduced lipogenesis.
Conclusions:
- Tetratricopeptide repeat domain protein 39B (T39) promotes LXR ubiquitination and degradation.
- Inhibition of T39 preserves LXR activity, offering a potential therapeutic strategy for steatohepatitis and atherosclerosis.
- Targeting T39 may simultaneously address both metabolic and cardiovascular complications.
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