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一个由无法逃避的威胁触发的强直性静止的小脑-脑桥前回路。

A cerebellar-prepontine circuit for tonic immobility triggered by an inescapable threat.

作者信息

Bhandiwad Ashwin A, Chu Nickolas C, Semenova Svetlana A, Holmes George A, Burgess Harold A

机构信息

Division of Developmental Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, Bethesda, MD 20892, USA.

出版信息

Sci Adv. 2022 Sep 30;8(39):eabo0549. doi: 10.1126/sciadv.abo0549. Epub 2022 Sep 28.

Abstract

Sudden changes in the environment are frequently perceived as threats and provoke defensive behavioral states. One such state is tonic immobility, a conserved defensive strategy characterized by powerful suppression of movement and motor reflexes. Tonic immobility has been associated with multiple brainstem regions, but the underlying circuit is unknown. Here, we demonstrate that a strong vibratory stimulus evokes tonic immobility in larval zebrafish defined by suppressed locomotion and sensorimotor responses. Using a circuit-breaking screen and targeted neuron ablations, we show that cerebellar granule cells and a cluster of glutamatergic ventral prepontine neurons (vPPNs) that express key stress-associated neuropeptides are critical components of the circuit that suppresses movement. The complete sensorimotor circuit transmits information from sensory ganglia through the cerebellum to vPPNs to regulate reticulospinal premotor neurons. These results show that cerebellar regulation of a neuropeptide-rich prepontine structure governs a conserved and ancestral defensive behavior that is triggered by an inescapable threat.

摘要

环境的突然变化常常被视为威胁,并引发防御行为状态。其中一种状态是紧张性不动,这是一种保守的防御策略,其特征是对运动和运动反射的强力抑制。紧张性不动与多个脑干区域有关,但潜在的神经回路尚不清楚。在这里,我们证明了一种强烈的振动刺激会在幼体斑马鱼中引发紧张性不动,其表现为运动和感觉运动反应受到抑制。通过使用电路阻断筛选和靶向神经元消融,我们表明小脑颗粒细胞和一群表达关键应激相关神经肽的谷氨酸能腹侧脑桥前神经元(vPPN)是抑制运动的神经回路的关键组成部分。完整的感觉运动神经回路将信息从感觉神经节通过小脑传递到vPPN,以调节网状脊髓前运动神经元。这些结果表明,富含神经肽的脑桥前结构的小脑调节控制着一种由无法逃避的威胁触发的保守且古老的防御行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/707d/9519051/fb9287df0e8d/sciadv.abo0549-f1.jpg

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