Mouse maternal protein restriction during preimplantation alone permanently alters brain neuron proportion and adult short-term memory

Author:

Gould Joanna M.,Smith Phoebe J.,Airey Chris J.,Mort Emily J.,Airey Lauren E.,Warricker Frazer D. M.,Pearson-Farr Jennifer E.,Weston Eleanor C.,Gould Philippa J. W.,Semmence Oliver G.,Restall Katie L.,Watts Jennifer A.,McHugh Patrick C.,Smith Stephanie J.,Dewing Jennifer M.,Fleming Tom P.,Willaime-Morawek SandrineORCID

Abstract

Maternal protein malnutrition throughout pregnancy and lactation compromises brain development in late gestation and after birth, affecting structural, biochemical, and pathway dynamics with lasting consequences for motor and cognitive function. However, the importance of nutrition during the preimplantation period for brain development is unknown. We have previously shown that maternal low-protein diet (LPD) confined to the preimplantation period (Emb-LPD) in mice, with normal nutrition thereafter, is sufficient to induce cardiometabolic and locomotory behavioral abnormalities in adult offspring. Here, using a range of in vivo and in vitro techniques, we report that Emb-LPD and sustained LPD reduce neural stem cell (NSC) and progenitor cell numbers at E12.5, E14.5, and E17.5 through suppressed proliferation rates in both ganglionic eminences and cortex of the fetal brain. Moreover, Emb-LPD causes remaining NSCs to up-regulate the neuronal differentiation rate beyond control levels, whereas in LPD, apoptosis increases to possibly temper neuron formation. Furthermore, Emb-LPD adult offspring maintain the increase in neuron proportion in the cortex, display increased cortex thickness, and exhibit short-term memory deficit analyzed by the novel-object recognition assay. Last, we identify altered expression of fragile X family genes as a potential molecular mechanism for adverse programming of brain development. Collectively, these data demonstrate that poor maternal nutrition from conception is sufficient to cause abnormal brain development and adult memory loss.

Funder

University of Southampton

Wessex Medical Research

Rosetrees Trust

RCUK | Biotechnology and Biological Sciences Research Council

EU-FP7

Gerald Kerkut Trust

Leonard Thomas fund

Dr Sanderson bursary

The Wolfson Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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