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神经元 SLC39A8 缺乏通过改变锰稳态来损害小脑发育。

Neuronal SLC39A8 deficiency impairs cerebellar development by altering manganese homeostasis.

机构信息

Department of Nutritional Sciences, University of Michigan School of Public Health, Ann Arbor, Michigan, USA.

Department of Pathology and.

出版信息

JCI Insight. 2024 Oct 22;9(20):e168440. doi: 10.1172/jci.insight.168440.

Abstract

Solute carrier family 39, member 8 (SLC39A8), is a transmembrane transporter that mediates the cellular uptake of zinc, iron, and manganese (Mn). Human genetic studies document the involvement of SLC39A8 in Mn homeostasis, brain development, and function. However, the role and pathophysiological mechanisms of SLC39A8 in the central nervous system remain elusive. We generated Slc39a8 neuron-specific knockout (Slc39a8-NSKO) mice to study SLC39A8 function in neurons. The Slc39a8-NSKO mice displayed markedly decreased Mn levels in the whole brain and brain regions, especially the cerebellum. Radiotracer studies using 54Mn revealed that Slc39a8-NSKO mice had impaired brain uptake of Mn. Slc39a8-NSKO cerebellums exhibited morphological defects and abnormal dendritic arborization of Purkinje cells. Reduced neurogenesis and increased apoptotic cell death occurred in the cerebellar external granular layer of Slc39a8-NSKO mice. Brain Mn deficiency in Slc39a8-NSKO mice was associated with motor dysfunction. Unbiased RNA-Seq analysis revealed downregulation of key pathways relevant to neurodevelopment and synaptic plasticity, including cAMP signaling pathway genes. We further demonstrated that Slc39a8 was required for the optimal transcriptional response to the cAMP-mediated signaling pathway. In summary, our study highlighted the essential roles of SLC39A8 in brain Mn uptake and cerebellum development and functions.

摘要

溶质载体家族 39,成员 8(SLC39A8)是一种跨膜转运蛋白,介导细胞对锌、铁和锰(Mn)的摄取。人类遗传学研究表明,SLC39A8 参与 Mn 稳态、大脑发育和功能。然而,SLC39A8 在中枢神经系统中的作用和病理生理机制仍不清楚。我们生成了 Slc39a8 神经元特异性敲除(Slc39a8-NSKO)小鼠,以研究 SLC39A8 在神经元中的功能。Slc39a8-NSKO 小鼠的全脑和脑区 Mn 水平明显降低,尤其是小脑。使用 54Mn 的示踪剂研究表明,Slc39a8-NSKO 小鼠的脑摄取 Mn 受损。Slc39a8-NSKO 小脑表现出形态缺陷和浦肯野细胞树突分支异常。Slc39a8-NSKO 小鼠小脑颗粒层的神经发生减少和凋亡细胞死亡增加。Slc39a8-NSKO 小鼠大脑 Mn 缺乏与运动功能障碍有关。无偏 RNA-Seq 分析显示,与神经发育和突触可塑性相关的关键途径的基因下调,包括 cAMP 信号通路基因。我们进一步证明,Slc39a8 是对 cAMP 介导的信号通路的最佳转录反应所必需的。总之,我们的研究强调了 SLC39A8 在脑 Mn 摄取和小脑发育和功能中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0db/11530126/8c6ba84587c1/jciinsight-9-168440-g019.jpg

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