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Transgenerational inheritance of BPA-induced obesity correlates with transmission of new CTCF sites in the Fto gene

Jung, Y. H.; Bixler, B. J.; Ruiz, D.; Wang, H.-L. V.; Linsenbaum, H.; Xiang, J.-F.; Shafik, A. M.; Jin, P.; Corces, V. G.

2020-11-20 genomics
10.1101/2020.11.20.391672 bioRxiv
Show abstract

Transgenerational transmission of epiphenotypes is poorly understood. Here we show that exposure of pregnant mouse F0 females to BPA results in obesity in the F2 progeny due to increased food intake and leptin resistance. This epiphenotype can be transmitted up to the F6 generation and disappears in F7. Analyses of chromatin accessibility in sperm of the F1-F6 generations reveals alterations in the binding of CTCF at two enhancers of the Fto gene in obese but not control animals that correlates with transmission of obesity. Deletion of the CTCF site in Fto results in mice that fail to become obese when exposed to BPA. These Fto enhancers show increased interactions in sperm of obese mice with the Irx3 and Irx5 genes, which are involved in the differentiation of appetite controlling AgRP/NPY neurons. Single-nucleus and immunofluorescence analyses in the arcuate nucleus of the hypothalamus suggest that exposure to BPA results in expansion of the number of orexigenic AgRP neurons. This expansion correlates with increased accessibility of the Fto proximal enhancer in radial glia-like neural stem cells (RG-NSCs), which give rise to AgRP/NPY neurons, and in mature oligodendrocytes. The results provide a molecular mechanism for transgenerational inheritance in mammals and suggest that both genetic and epigenetic alterations of Fto can lead to the same phenotypic outcomes.

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