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疑核对心率控制的分子解析

Molecular Disambiguation of Heart Rate Control by the Nucleus Ambiguus.

作者信息

Jalil Maira, Coverdell Tatiana C, Gutierrez Veronica A, Crook Maisie E, Shi Jiachen, Stornetta Daniel S, Schwalbe Dana C, Abbott Stephen B G, Campbell John N

机构信息

Department of Biology, University of Virginia, Charlottesville, VA.

Department of Pharmacology, University of Virginia, Charlottesville, VA.

出版信息

bioRxiv. 2023 Dec 17:2023.12.16.571991. doi: 10.1101/2023.12.16.571991.

Abstract

The nucleus ambiguus (nAmb) provides parasympathetic control of cardiorespiratory functions as well as motor control of the upper airways and striated esophagus. A subset of nAmb neurons innervates the heart through the vagus nerve to control cardiac function at rest and during key autonomic reflexes such as the mammalian diving reflex. These cardiovagal nAmb neurons may be molecularly and anatomically distinct, but how they differ from other nAmb neurons in the adult brain remains unclear. We therefore classified adult mouse nAmb neurons based on their genome-wide expression profiles, innervation of cardiac ganglia, and ability to control HR. Our integrated analysis of single-nucleus RNA-sequencing data predicted multiple molecular subtypes of nAmb neurons. Mapping the axon projections of one nAmb neuron subtype, Npy2r-expressing nAmb neurons, showed that they innervate cardiac ganglia. Optogenetically stimulating all nAmb vagal efferent neurons dramatically slowed HR to a similar extent as selectively stimulating nAmb neurons, but not other subtypes of nAmb neurons. Finally, we trained mice to perform voluntary underwater diving, which we use to show nAmb neurons are activated by the diving response, consistent with a cardiovagal function for this nAmb subtype. These results together reveal the molecular organization of nAmb neurons and its control of heart rate.

摘要

疑核(nAmb)对心肺功能进行副交感神经控制,同时也对上呼吸道和横纹肌食管进行运动控制。疑核神经元的一个子集通过迷走神经支配心脏,以控制静息时以及诸如哺乳动物潜水反射等关键自主反射期间的心脏功能。这些心迷走疑核神经元在分子和解剖学上可能有所不同,但它们在成体大脑中与其他疑核神经元如何不同仍不清楚。因此,我们根据成年小鼠疑核神经元的全基因组表达谱、心脏神经节的支配情况以及控制心率的能力对其进行了分类。我们对单核RNA测序数据的综合分析预测了疑核神经元的多种分子亚型。绘制一种疑核神经元亚型(表达Npy2r的疑核神经元)的轴突投射图,显示它们支配心脏神经节。光遗传学刺激所有疑核迷走传出神经元可使心率显著减慢,其程度与选择性刺激疑核神经元相似,但对疑核神经元的其他亚型则不然。最后,我们训练小鼠进行自愿水下潜水,以此表明疑核神经元会被潜水反应激活,这与该疑核亚型的心迷走功能一致。这些结果共同揭示了疑核神经元的分子组织及其对心率的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a27/10760142/6c05800f303d/nihpp-2023.12.16.571991v1-f0001.jpg

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