Synaptic proteome perturbations after maternal immune activation: Identification of embryonic and adult hippocampal changes

IF 8.8 2区 医学 Q1 IMMUNOLOGY
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Abstract

Background

Maternal immune activation (MIA) triggers neurobiological changes in offspring, potentially reshaping the molecular synaptic landscape, with the hippocampus being particularly vulnerable. However, critical details regarding developmental timing of these changes and whether they differ between males and females remain unclear.

Methods

We induced MIA in C57BL/6J mice on gestational day nine using the viral mimetic poly(I:C) and performed mass spectrometry-based proteomic analyses on hippocampal synaptoneurosomes of embryonic (E18) and adult (20 ± 1 weeks) MIA offspring.

Results

In the embryonic synaptoneurosomes, MIA led to lipid, polysaccharide, and glycoprotein metabolism pathway disruptions. In the adult synaptic proteome, we observed a dynamic shift toward transmembrane trafficking, intracellular signalling cascades, including cell death and growth, and cytoskeletal organisation. In adults, many associated pathways overlapped between males and females. However, we found distinct sex-specific enrichment of dopaminergic and glutamatergic pathways. We identified 50 proteins altered by MIA in both embryonic and adult samples (28 with the same directionality), mainly involved in presynaptic structure and synaptic vesicle function. We probed human phenome-wide association study data in the cognitive and psychiatric domains, and 49 of the 50 genes encoding these proteins were significantly associated with the investigated phenotypes.

Conclusions

Our data emphasise the dynamic effects of viral-like MIA on developing and mature hippocampi and provide novel targets for study following prenatal immune challenges. The 22 proteins that changed directionality from the embryonic to adult hippocampus, suggestive of compensatory over-adaptions, are particularly attractive for future investigations.

母体免疫激活后的突触蛋白质组扰动:识别胚胎和成年海马的变化
背景:母体免疫激活(MIA)会引发后代的神经生物学变化,可能会重塑分子突触景观,海马尤其容易受到影响。然而,有关这些变化的发育时间以及雌雄之间是否存在差异的关键细节仍不清楚:方法:我们利用病毒模拟物 poly(I:C)在妊娠第 9 天诱导 C57BL/6J 小鼠发生 MIA,并对 MIA 胚胎(E18)和成年(20 ± 1 周)后代的海马突触神经体进行了基于质谱的蛋白质组学分析:结果:在胚胎突触神经元中,MIA导致脂质、多糖和糖蛋白代谢途径中断。在成年突触蛋白质组中,我们观察到向跨膜运输、细胞内信号级联(包括细胞死亡和生长)和细胞骨架组织的动态转变。在成人中,许多相关通路在男性和女性之间重叠。然而,我们发现多巴胺能和谷氨酸能通路具有明显的性别特异性。我们在胚胎和成人样本中发现了 50 种因 MIA 而改变的蛋白质(28 种具有相同的方向性),主要涉及突触前结构和突触小泡功能。我们探究了认知和精神领域的人类全表型关联研究数据,在编码这些蛋白质的 50 个基因中,有 49 个与所调查的表型显著相关:我们的数据强调了病毒样MIA对发育和成熟海马的动态影响,并为产前免疫挑战后的研究提供了新的目标。从胚胎到成年海马,有22个蛋白质的方向性发生了改变,这表明存在代偿性过度适应,对未来的研究尤其具有吸引力。
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来源期刊
CiteScore
29.60
自引率
2.00%
发文量
290
审稿时长
28 days
期刊介绍: Established in 1987, Brain, Behavior, and Immunity proudly serves as the official journal of the Psychoneuroimmunology Research Society (PNIRS). This pioneering journal is dedicated to publishing peer-reviewed basic, experimental, and clinical studies that explore the intricate interactions among behavioral, neural, endocrine, and immune systems in both humans and animals. As an international and interdisciplinary platform, Brain, Behavior, and Immunity focuses on original research spanning neuroscience, immunology, integrative physiology, behavioral biology, psychiatry, psychology, and clinical medicine. The journal is inclusive of research conducted at various levels, including molecular, cellular, social, and whole organism perspectives. With a commitment to efficiency, the journal facilitates online submission and review, ensuring timely publication of experimental results. Manuscripts typically undergo peer review and are returned to authors within 30 days of submission. It's worth noting that Brain, Behavior, and Immunity, published eight times a year, does not impose submission fees or page charges, fostering an open and accessible platform for scientific discourse.
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