de León Reyes Noelia S, Bortolozzo-Gleich Maria Helena, Nomura Yuki, Fregola Cristina García, Nieto Marta, Gogos Joseph A, Leroy Félix
Instituto de Neurociencias CSIC-UMH, Avenida Santiago Ramon y Cajal San Juan de Alicante, Spain.
Centro Nacional de Biotecnología (CNB-CSIC), Campus de Cantoblanco, Darwin 3, 28049, Madrid, Spain.
bioRxiv. 2024 Sep 6:2024.09.05.611389. doi: 10.1101/2024.09.05.611389.
Untangling the hippocampus connectivity is critical for understanding the mechanisms supporting learning and memory. However, the function of interhemispheric connections between hippocampal formations is still poorly understood. So far, two major hippocampal commissural projections have been characterized in rodents. Mossy cells from the hilus of the dentate gyrus project to the inner molecular layer of the contralateral dentate gyrus and CA3 and CA2 pyramidal neuron axonal collaterals to contralateral CA3, CA2 and CA1. In contrary, little is known about commissural projection from the CA1 region. Here, we show that CA1 pyramidal neurons from the dorsal hippocampus project to contralateral dorsal CA1 as well as dorsal subiculum. We further demonstrate that the interhemispheric projection from CA1 to dorsal subiculum supports spatial memory and spatial working memory in WT mice, two cognitive functions impaired in male mice from the model of 22q11.2 deletion syndrome (22q11.2DS) associated with schizophrenia. Investigation of the CA1 interhemispheric projections in mice revealed that these projections are disrupted with male mutants showing stronger anatomical defects compared to females. Overall, our results characterize a novel interhemispheric projection from dCA1 to dorsal subiculum and suggest that dysregulation of this projection may contribute to the cognitive deficits associated with the 22q11.2DS.
理清海马体的连接对于理解支持学习和记忆的机制至关重要。然而,海马结构之间半球间连接的功能仍知之甚少。到目前为止,啮齿动物中已鉴定出两种主要的海马连合投射。齿状回门区的苔藓细胞投射到对侧齿状回的内分子层以及CA3和CA2,锥体细胞轴突侧支投射到对侧CA3、CA2和CA1。相反,关于CA1区的连合投射知之甚少。在这里,我们表明,来自背侧海马体的CA1锥体细胞投射到对侧背侧CA1以及背侧下托。我们进一步证明,从CA1到背侧下托的半球间投射支持野生型小鼠的空间记忆和空间工作记忆,这两种认知功能在与精神分裂症相关的22q11.2缺失综合征(22q11.2DS)雄性小鼠模型中受损。对22q11.2DS小鼠CA1半球间投射的研究表明,这些投射被破坏,雄性突变体比雌性表现出更强的解剖学缺陷。总体而言,我们的结果描述了一种从背侧CA1到背侧下托的新型半球间投射,并表明该投射的失调可能导致与22q11.2DS相关的认知缺陷。