前脑特异性促红细胞生成素的丧失引起不同EPO受体的代偿性上调。

IF 10.1 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Umer Javed Butt, Umut Çakır, Anne-Fleur Wildenburg, Yasmina Curto, Liu Ye, Vikas Bansal, Susann Boretius, Klaus-Armin Nave, Manvendra Singh, Hannelore Ehrenreich
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引用次数: 0

摘要

促认知生长因子促红细胞生成素(EPO)及其典型受体EPOR,早已被认为在大多数脑细胞类型中表达。通过注射外源性EPO或内源性缺氧刺激的EPO,认知领域得到改善,包括重要的前脑功能,即注意力、工作记忆、驱动力和执行能力。为了深入了解前脑表达的EPO参与的机制,我们在小鼠中删除了EPO,将其作为特定的crei驱动Emx1。在这里,我们报告了这些突变小鼠在综合行为测试电池中的表现与野生型小鼠相当。重要的是,我们发现EPOR和一种新的脑表达EPO受体EphB4的转录本都以代偿性上调的方式响应EPO缺失。原位杂交和免疫组化证实EphB4在脑内的表达及EPOR前脑清除后EphB4的表达增加。EPOR和EphB4的增强表达及其调控相互关系可能解释了为什么EmxEPO突变体在最具挑战性的工作记忆任务中表现出甚至更好的表现。利用先前发表的单核rna -seq数据集,我们进一步证实了所提出的代偿机制,其中EPO丢失或减少驱动EPOR表达升高,为海马锥体神经元中EPO信号的复杂调控增加了另一层。总的来说,这些数据可以解释前脑范围内EPO消除缺乏行为和负面认知后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Forebrain-specific loss of erythropoietin provokes compensatory upregulation of different EPO receptors.

The procognitive growth factor erythropoietin (EPO) and its canonical receptor, EPOR, have long been recognized to be expressed by most cell types in the brain. Cognitive domains, improved by injections of exogenous EPO or by endogenous, hypoxia-stimulated EPO, include important forebrain functions, namely attention, working memory, drive, and executive performance. To gain mechanistic insight into the involvement of forebrain-expressed EPO, we deleted EPO in mice using as specific cre-driver Emx1. Here, we report that these mutant mice act comparably to their wildtype littermates in a comprehensive behavioral test battery. Importantly, we find that the transcripts of both EPOR and a novel, brain-expressed EPO receptor, EphB4, respond to EPO deletion with compensatory upregulation. EphB4 expression in brain and its increase upon forebrain erasure of EPOR are confirmed by in situ hybridization and immunohistochemistry. The augmented expression of both EPOR and EphB4 and their regulatory intercorrelation may explain why EmxEPO mutants show an even superior performance in the most challenging working memory task. Using the previously published single-nuclei-RNA-seq dataset, we further confirm the suggested compensatory mechanism, wherein EPO loss or reduction drives elevated EPOR expression, adding another layer to the intricate regulation of EPO signaling in hippocampal pyramidal neurons. Collectively, these data may explain the lack of behavioral and negative cognitive consequences upon forebrain-wide EPO elimination.

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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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