Perinatal protein malnutrition alters maternal behavior and leads to maladaptive stress response, neurodevelopmental delay and disruption on DNA methylation machinery in female mice offspring

IF 2.5 3区 医学 Q2 BEHAVIORAL SCIENCES Hormones and Behavior Pub Date : 2024-07-18 DOI:10.1016/j.yhbeh.2024.105603
Carolina D. Alberca , Erika I. Georgieff , Bruno G. Berardino , Nadina M. Ferroni , Estefanía A. Fesser , Verónica I. Cantarelli , Marina F. Ponzio , Eduardo T. Cánepa , Mariela Chertoff
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Abstract

Deficiencies in maternal nutrition have long-term consequences affecting brain development of the progeny and its behavior. In the present work, female mice were exposed to a normal-protein or a low-protein diet during gestation and lactation. We analyzed behavioral and molecular consequences of malnutrition in dams and how it affects female offspring at weaning. We have observed that a low-protein diet during pregnancy and lactation leads to anxiety-like behavior and anhedonia in dams. Protein malnutrition during the perinatal period delays physical and neurological development of female pups. Glucocorticoid levels increased in the plasma of malnourished female offspring but not in dams when compared to the control group. Interestingly, the expression of glucocorticoid receptor (GR) was reduced in hippocampus and amygdala on both malnourished dams and female pups. In addition, malnourished pups exhibited a significant increase in the expression of Dnmt3b, Gadd45b, and Fkbp5 and a reduction in Bdnf VI variant mRNA in hippocampus. In contrast, a reduction on Dnmt3b has been observed on the amygdala of weaned mice. No changes have been observed on global methylation levels (5-methylcytosine) in hippocampal genomic DNA neither in dams nor female offspring.

In conclusion, deregulated behaviors observed in malnourished dams might be mediated by a low expression of GR in brain regions associated with emotive behaviors. Additionally, low-protein diet differentially deregulates the expression of genes involved in DNA methylation/demethylation machinery in female offspring but not in dams, providing an insight into regional- and age-specific mechanisms due to protein malnutrition.

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围产期蛋白质营养不良会改变母体行为,导致雌性小鼠后代适应性应激反应不良、神经发育迟缓和 DNA 甲基化机制紊乱
母体营养不足会长期影响后代的大脑发育及其行为。在本研究中,雌性小鼠在妊娠期和哺乳期被置于正常蛋白质或低蛋白饮食中。我们分析了母鼠营养不良的行为和分子后果及其对断奶后雌性后代的影响。我们观察到,妊娠期和哺乳期低蛋白饮食会导致母鼠出现焦虑样行为和失神。围产期蛋白质营养不良会延迟雌性幼崽的身体和神经发育。与对照组相比,营养不良的雌性后代血浆中的糖皮质激素水平升高,而母鼠血浆中的糖皮质激素水平则没有升高。有趣的是,营养不良的母鼠和雌性幼鼠的海马和杏仁核中糖皮质激素受体(GR)的表达均有所降低。此外,营养不良的幼鼠海马中 Dnmt3b、Gadd45b 和 Fkbp5 的表达量明显增加,Bdnf VI 变体 mRNA 的表达量减少。相反,在断奶小鼠的杏仁核中观察到 Dnmt3b 的减少。总之,在营养不良的母鼠身上观察到的行为失调可能是由于与情感行为相关的脑区中 GR 的低表达所引起的。此外,低蛋白饮食会不同程度地降低雌性后代(而非母鼠)DNA甲基化/去甲基化机制相关基因的表达,这有助于了解蛋白质营养不良导致的区域和年龄特异性机制。
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来源期刊
Hormones and Behavior
Hormones and Behavior 医学-行为科学
CiteScore
6.70
自引率
8.60%
发文量
139
审稿时长
91 days
期刊介绍: Hormones and Behavior publishes original research articles, reviews and special issues concerning hormone-brain-behavior relationships, broadly defined. The journal''s scope ranges from laboratory and field studies concerning neuroendocrine as well as endocrine mechanisms controlling the development or adult expression of behavior to studies concerning the environmental control and evolutionary significance of hormone-behavior relationships. The journal welcomes studies conducted on species ranging from invertebrates to mammals, including humans.
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