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一种用于交叉方法剖析发育定义的成年感觉运动回路的新型Hoxb8FlpO小鼠品系。

A new Hoxb8FlpO mouse line for intersectional approaches to dissect developmentally defined adult sensorimotor circuits.

作者信息

Bohic Manon, Upadhyay Aman, Eisdorfer Jaclyn T, Keating Jessica, Simon Rhiana C, Briones Brandy A, Azadegan Chloe, Nacht Hannah D, Oputa Olisemeka, Martinez Alana M, Bethell Bridget N, Gradwell Mark A, Romanienko Peter, Ramer Matt S, Stuber Garret D, Abraira Victoria E

机构信息

Cell Biology and Neuroscience Department, Rutgers University, The State University of New Jersey, Piscataway, NJ, United States.

W.M. Keck Center for Collaborative Neuroscience, Rutgers University, The State University of New Jersey, Piscataway, NJ, United States.

出版信息

Front Mol Neurosci. 2023 Aug 1;16:1176823. doi: 10.3389/fnmol.2023.1176823. eCollection 2023.

Abstract

Improvements in the speed and cost of expression profiling of neuronal tissues offer an unprecedented opportunity to define ever finer subgroups of neurons for functional studies. In the spinal cord, single cell RNA sequencing studies support decades of work on spinal cord lineage studies, offering a unique opportunity to probe adult function based on developmental lineage. While Cre/Flp recombinase intersectional strategies remain a powerful tool to manipulate spinal neurons, the field lacks genetic tools and strategies to restrict manipulations to the adult mouse spinal cord at the speed at which new tools develop. This study establishes a new workflow for intersectional mouse-viral strategies to dissect adult spinal function based on developmental lineages in a modular fashion. To restrict manipulations to the spinal cord, we generate a brain-sparing mouse line restricting Flp recombinase expression to caudal tissue. Recapitulating endogenous gene expression, Flp-dependent reporter expression is present in the caudal embryo starting day 9.5. This expression restricts Flp activity in the adult to the caudal brainstem and below. heterozygous and homozygous mice do not develop any of the sensory or locomotor phenotypes evident in Hoxb8 heterozygous or mutant animals, suggesting normal developmental function of the Hoxb8 gene and protein in mice. Compared to the variability of brain recombination in available caudal Cre and Flp lines, activity is not present in the brain above the caudal brainstem, independent of mouse genetic background. Lastly, we combine the mouse line with dorsal horn developmental lineage Cre mouse lines to express GFP in developmentally determined dorsal horn populations. Using GFP-dependent Cre recombinase viruses and Cre recombinase-dependent inhibitory chemogenetics, we target developmentally defined lineages in the adult. We show how developmental knock-out versus transient adult silencing of the same ROR𝛃 lineage neurons affects adult sensorimotor behavior. In summary, this new mouse line and viral approach provides a blueprint to dissect adult somatosensory circuit function using Cre/Flp genetic tools to target spinal cord interneurons based on genetic lineage.

摘要

神经元组织表达谱分析在速度和成本方面的改进为定义更精细的神经元亚群以进行功能研究提供了前所未有的机会。在脊髓中,单细胞RNA测序研究支持了数十年关于脊髓谱系研究的工作,为基于发育谱系探究成年功能提供了独特的机会。虽然Cre/Flp重组酶交叉策略仍然是操纵脊髓神经元的强大工具,但该领域缺乏以新工具开发的速度将操作限制在成年小鼠脊髓的遗传工具和策略。本研究建立了一种新的交叉小鼠病毒策略工作流程,以模块化方式基于发育谱系剖析成年脊髓功能。为了将操作限制在脊髓,我们生成了一种脑保留小鼠品系,将Flp重组酶表达限制在尾部组织。概括内源性基因表达,从第9.5天开始,Flp依赖性报告基因表达存在于尾部胚胎中。这种表达将成年期的Flp活性限制在尾侧脑干及以下。杂合子和纯合子小鼠没有出现Hoxb8杂合子或突变动物中明显的任何感觉或运动表型,表明Hoxb8基因和蛋白质在小鼠中具有正常的发育功能。与现有尾侧Cre和Flp品系中脑重组的变异性相比,尾侧脑干以上的脑区不存在活性,与小鼠遗传背景无关。最后,我们将该小鼠品系与背角发育谱系Cre小鼠品系相结合,在发育确定的背角群体中表达绿色荧光蛋白(GFP)。使用GFP依赖性Cre重组酶病毒和Cre重组酶依赖性抑制性化学遗传学,我们在成年期靶向发育定义的谱系。我们展示了相同RORβ谱系神经元的发育敲除与成年期短暂沉默如何影响成年感觉运动行为。总之,这种新的小鼠品系和病毒方法提供了一个蓝图,可利用Cre/Flp遗传工具基于遗传谱系靶向脊髓中间神经元来剖析成年躯体感觉回路功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bfc/10437123/a0da2394069d/fnmol-16-1176823-g001.jpg

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