4.6 Article

Transcriptome analysis of fat accumulation in 3T3-L1 adipocytes induced by chlorantraniliprole

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FRONTIERS IN NUTRITION
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fnut.2022.1091477

关键词

chlorantraniliprole; adipogenesis; fat accumulation; RNA sequencing; transcriptome analysis

资金

  1. National Natural Science Foundation of China
  2. Senior Talent Cultivation Program of Jiangsu University
  3. [32001794]
  4. [20JDG070]

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Overall, this study suggests that chlorantraniliprole-induced lipogenesis is mediated through a whole-gene transcriptome response. Several key genes involved in adipocyte differentiation and lipogenesis were identified, providing further insight into the potential mechanisms underlying chlorantraniliprole-induced adipogenesis.
IntroductionChlorantraniliprole is a diamide insecticide widely used in agriculture. Chlorantraniliprole has been previously found to increase the accumulation of triglycerides (fats) in adipocytes, however, the underlying molecular mechanism is unknown. The present study aimed to explore the molecular mechanisms of chlorantraniliprole-induced fat accumulation in 3T3-L1 adipocytes. MethodsWe measured the triglyceride content in chlorantraniliprole-treated 3T3-L1 adipocytes, and collected cell samples treated with chlorantraniliprole for 24 h and without any treatment for RNA sequencing. ResultsCompared with the control group, the content of triglyceride in the treatment group of chlorantraniliprole was significantly increased. The results of RNA sequencing (RNA-seq) showed that 284 differentially expressed genes (DEGs) were identified after treatment with chlorantraniliprole, involving 39 functional groups of gene ontology (GO) and 213 KEGG pathways. Moreover, these DEGs were significantly enriched in several key genes that regulate adipocyte differentiation and lipogenesis including Igf1, Rarres2, Nr1h3, and Psmb8. DiscussionIn general, these results suggest that chlorantraniliprole-induced lipogenesis is attributed to a whole-gene transcriptome response, which promotes further understanding of the potential mechanism of chlorantraniliprole-induced adipogenesis.

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