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促黑素细胞激素原(POMC)和刺鼠相关蛋白(AgRP)神经元的直接输入和轴突投射的全脑图谱。

Whole-brain mapping of the direct inputs and axonal projections of POMC and AgRP neurons.

作者信息

Wang Daqing, He Xiaobing, Zhao Zhe, Feng Qiru, Lin Rui, Sun Yue, Ding Ting, Xu Fuqiang, Luo Minmin, Zhan Cheng

机构信息

School of Life Sciences, Tsinghua University Beijing China ; National Institute of Biological Sciences Beijing, China.

Key Laboratory of Magnetic Resonance in Biological Systems and State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences Wuhan, China ; University of Chinese Academy of Sciences Beijing, China.

出版信息

Front Neuroanat. 2015 Mar 27;9:40. doi: 10.3389/fnana.2015.00040. eCollection 2015.

Abstract

Pro-opiomelanocortin (POMC) neurons in the arcuate nucleus (ARC) of the hypothalamus and nucleus tractus solitarius (NTS) of the brainstem play important roles in suppressing food intake and maintaining energy homeostasis. Previous tract-tracing studies have revealed the axonal connection patterns of these two brain areas, but the intermingling of POMC neurons with other neuron types has made it challenging to precisely identify the inputs and outputs of POMC neurons. In this study, we used the modified rabies virus to map the brain areas that provide direct inputs to the POMC neurons in the ARC and NTS as well as the inputs to the ARC AgRP neurons for comparison. ARC POMC neurons receive inputs from dozens of discrete structures throughout the forebrain and brainstem. The brain areas containing the presynaptic partners of ARC POMC neurons largely overlap with those of ARC AgRP neurons, although POMC neurons receive relatively broader, denser inputs. Furthermore, POMC neurons in the NTS receive direct inputs predominantly from the brainstem and show very different innervation patterns for POMC neurons in the ARC. By selectively expressing fluorescent markers in the ARC and NTS POMC neurons, we found that almost all of their major presynaptic partners are innervated by POMC neurons in the two areas, suggesting that there are strong reciprocal projections among the major POMC neural pathways. By comprehensively chartering the whole-brain connections of the central melanocortin system in a cell-type-specific manner, this study lays the foundation for dissecting the roles and underlying circuit mechanisms of specific neural pathways in regulating energy homeostasis.

摘要

下丘脑弓状核(ARC)和脑干孤束核(NTS)中的阿片-促黑素细胞皮质素原(POMC)神经元在抑制食物摄入和维持能量平衡方面发挥着重要作用。以往的束路追踪研究揭示了这两个脑区的轴突连接模式,但POMC神经元与其他神经元类型相互交织,使得精确识别POMC神经元的输入和输出具有挑战性。在本研究中,我们使用改良的狂犬病病毒来绘制向ARC和NTS中的POMC神经元提供直接输入的脑区,以及向ARC AgRP神经元的输入,以便进行比较。ARC POMC神经元从前脑和脑干的数十个离散结构接收输入。尽管POMC神经元接收的输入相对更广泛、更密集,但包含ARC POMC神经元突触前伙伴的脑区与ARC AgRP神经元的脑区在很大程度上重叠。此外,NTS中的POMC神经元主要从脑干接收直接输入,并且显示出与ARC中的POMC神经元非常不同的支配模式。通过在ARC和NTS POMC神经元中选择性表达荧光标记,我们发现它们几乎所有主要的突触前伙伴都受到这两个区域中POMC神经元的支配,这表明在主要的POMC神经通路之间存在强大的相互投射。通过以细胞类型特异性的方式全面绘制中央黑皮质素系统的全脑连接,本研究为剖析特定神经通路在调节能量平衡中的作用和潜在的电路机制奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/411e/4375998/b99267bf6146/fnana-09-00040-g0001.jpg

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