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SLC35D3 promotes white adipose tissue browning to ameliorate obesity by NOTCH signaling.


ABSTRACT: White adipose tissue browning can promote lipid burning to increase energy expenditure and improve adiposity. Here, we show that Slc35d3 expression is significantly lower in adipose tissues of obese mice. While adipocyte-specific Slc35d3 knockin is protected against diet-induced obesity, adipocyte-specific Slc35d3 knockout inhibits white adipose tissue browning and causes decreased energy expenditure and impaired insulin sensitivity in mice. Mechanistically, we confirm that SLC35D3 interacts with the NOTCH1 extracellular domain, which leads to the accumulation of NOTCH1 in the endoplasmic reticulum and thus inhibits the NOTCH1 signaling pathway. In addition, knockdown of Notch1 in mouse inguinal white adipose tissue mediated by orthotopic injection of AAV8-adiponectin-shNotch1 shows considerable improvement in obesity and glucolipid metabolism, which is more pronounced in adipocyte-specific Slc35d3 knockout mice than in knockin mice. Overall, in this study, we reveal that SLC35D3 is involved in obesity via NOTCH1 signaling, and low adipose SLC35D3 expression in obesity might be a therapeutic target for obesity and associated metabolic disorders.

SUBMITTER: Wang H 

PROVIDER: S-EPMC10667520 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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SLC35D3 promotes white adipose tissue browning to ameliorate obesity by NOTCH signaling.

Wang Hongrui H   Yu Liang L   Wang Jin'e J   Zhang Yaqing Y   Xu Mengchen M   Lv Cheng C   Cui Bing B   Yuan Mengmeng M   Zhang Yu Y   Yan Yupeng Y   Hui Rutai R   Wang Yibo Y  

Nature communications 20231123 1


White adipose tissue browning can promote lipid burning to increase energy expenditure and improve adiposity. Here, we show that Slc35d3 expression is significantly lower in adipose tissues of obese mice. While adipocyte-specific Slc35d3 knockin is protected against diet-induced obesity, adipocyte-specific Slc35d3 knockout inhibits white adipose tissue browning and causes decreased energy expenditure and impaired insulin sensitivity in mice. Mechanistically, we confirm that SLC35D3 interacts wit  ...[more]

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