Metabolomics

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Low chorionic villous succinate accumulation associates with recurrent spontaneous abortion risk


ABSTRACT: Dysregulated extravillous trophoblast invasion and proliferation are known to increase the risk of recurrent spontaneous abortion (RSA); however, the underlying mechanism remains unclear. Herein, in our retrospective observational case-control study we show that villous samples from RSA patients, compared to healthy controls, display reduced succinate dehydrogenase complex iron sulfur subunit (SDHB) DNA methylation, elevated SDHB expression, and reduced succinate levels, indicating that low succinate levels correlate with RSA. Moreover, we find high succinate levels in early pregnant women are correlated with successful embryo implantation. SDHB promoter methylation recruited MBD1 and excluded c-Fos, inactivating SDHB expression and causing intracellular succinate accumulation which mimicked hypoxia in extravillous trophoblasts cell lines JEG3 and HTR8 via the PHD2-VHL-HIF-1α pathway; however, low succinate levels reversed this effect and increased the risk of abortion in mouse model. This study reveals that abnormal metabolite levels inhibit extravillous trophoblast function and highlights an approach for RSA intervention.

INSTRUMENT(S): Nuclear Magnetic Resonance (NMR) -

SUBMITTER: Xu Sha 

PROVIDER: MTBLS2148 | MetaboLights | 2021-10-06

REPOSITORIES: MetaboLights

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Low chorionic villous succinate accumulation associates with recurrent spontaneous abortion risk.

Wang Xiao-Hui XH   Xu Sha S   Zhou Xiang-Yu XY   Zhao Rui R   Lin Yan Y   Cao Jing J   Zang Wei-Dong WD   Tao Hui H   Xu Wei W   Li Ming-Qing MQ   Zhao Shi-Min SM   Jin Li-Ping LP   Zhao Jian-Yuan JY  

Nature communications 20210608 1


Dysregulated extravillous trophoblast invasion and proliferation are known to increase the risk of recurrent spontaneous abortion (RSA); however, the underlying mechanism remains unclear. Herein, in our retrospective observational case-control study we show that villous samples from RSA patients, compared to healthy controls, display reduced succinate dehydrogenase complex iron sulfur subunit (SDHB) DNA methylation, elevated SDHB expression, and reduced succinate levels, indicating that low succ  ...[more]

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