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February 3, 2020SHILAP Revista de lepidopterología169 citationsOpen Access

Endotoxin Producers Overgrowing in Human Gut Microbiota as the Causative Agents for Nonalcoholic Fatty Liver Disease

NFNa FeiABAurélia BruneauXZXiaojun Zhang

Key Points

  • To determine whether specific endotoxin-producing bacterial strains from the human gut act as causative agents for nonalcoholic fatty liver disease and evaluate the role of LPS-TLR4 signaling in driving this pathogenesis.
  • Isolated Gram-negative pathobiont strains (Enterobacter cloacae B29, Escherichia coli PY102, and Klebsiella pneumoniae A7) from morbidly obese humans with severe fatty liver.
  • Monoassociated wild-type and TLR4-deficient C57BL/6J germfree mice fed a high-fat diet with isolated bacterial strains, waaG-deleted mutants, or control commensal Bacteroides thetaiotaomicron.
  • Monoassociation with E. cloacae B29, E. coli PY102, or K. pneumoniae A7 induced nonalcoholic fatty liver disease in high-fat diet-fed germfree mice, whereas high-fat diet alone or B. thetaiotaomicron did not.
  • Deletion of the endotoxin synthetic gene waaG in E. cloacae B29 abolished its ability to induce fatty liver disease, and E. cloacae B29 failed to cause liver disease in TLR4-deficient germfree mice.

Abstract

Gut microbiota-derived endotoxin has been linked to human nonalcoholic fatty liver disease (NAFLD), but the specific causative agents and their molecular mechanisms remain elusive. In this study, we investigated whether bacterial strains of endotoxin-producing pathogenic species overgrowing in obese human gut can work as causative agents for NAFLD. We further assessed the role of lipopolysaccharide (LPS)-Toll-like receptor 4 (TLR4) cross talk in this pathogenicity. Nonvirulent strains of Gram-negative pathobionts were isolated from obese human gut and monoassociated with C57BL/6J germfree (GF) mice fed a high-fat diet (HFD). Deletion of waaG in the bacterial endotoxin synthetic pathway and knockout of TLR4 in GF mice were used to further study the underlying mechanism for a causal relationship between these strains and the development of NAFLD. Three endotoxin-producing strains, Enterobacter cloacae B29, Escherichia coli PY102, and Klebsiella pneumoniae A7, overgrowing in the gut of morbidly obese volunteers with severe fatty liver, induced NAFLD when monoassociated with GF mice on HFD, while HFD alone did not induce the disease in GF mice. The commensal Bacteroides thetaiotaomicron (ATCC 29148), whose endotoxin activity was markedly lower than that of Enterobacteriaceae strains, did not induce NAFLD in GF mice. B29 lost its proinflammatory properties and NAFLD-inducing capacity upon deletion of the waaG gene. Moreover, E. cloacae B29 did not induce NAFLD in TLR4-deficient GF mice. These nonvirulent endotoxin-producing strains in pathobiont species overgrowing in human gut may work as causative agents, with LPS-TLR4 cross talk as the most upstream and essential molecular event for NAFLD.IMPORTANCE Recent studies have reported a link between gut microbiota and nonalcoholic fatty liver disease (NAFLD), showing that germfree (GF) mice do not develop metabolic syndromes, including NAFLD. However, the specific bacterial species causing NAFLD, as well as their molecular cross talk with the host for driving liver disease, remain elusive. Here, we found that nonvirulent endotoxin-producing strains of pathogenic species overgrowing in obese human gut can act as causative agents for induction of NAFLD and related metabolic disorders. The cross talk between endotoxin from these specific producers and the host's TLR4 receptor is the most upstream and essential molecular event for inducing all phenotypes in NAFLD and related metabolic disorders. These nonvirulent endotoxin-producing strains of gut pathogenic species overgrowing in human gut may collectively become a predictive biomarker or serve as a novel therapeutic target for NAFLD and related metabolic disorders.

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Cite This Study

Fei et al. (2020) studied this question.

synapsesocial.com/papers/69dbe6baeb8801008ea3c303https://doi.org/10.1128/mbio.03263-19
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