Department of Biology, University of Toronto Mississauga, Mississauga, ON, L5L 1C6, Canada.
Department of Cell and Systems Biology, University of Toronto, Toronto, ON, M5S 3G5, Canada.
Nat Commun. 2023 Dec 20;14(1):8467. doi: 10.1038/s41467-023-42910-2.
Sensory cortices modulate innate behaviors through corticofugal projections targeting phylogenetically-old brainstem nuclei. However, the principles behind the functional connectivity of these projections remain poorly understood. Here, we show that in mice visual cortical neurons projecting to the optic-tract and dorsal-terminal nuclei (NOT-DTN) possess distinct response properties and anatomical connectivity, supporting the adaption of an essential innate eye movement, the optokinetic reflex (OKR). We find that these corticofugal neurons are enriched in specific visual areas, and they prefer temporo-nasal visual motion, matching the direction bias of downstream NOT-DTN neurons. Remarkably, continuous OKR stimulation selectively enhances the activity of these temporo-nasally biased cortical neurons, which can efficiently promote OKR plasticity. Lastly, we demonstrate that silencing downstream NOT-DTN neurons, which project specifically to the inferior olive-a key structure in oculomotor plasticity, impairs the cortical modulation of OKR and OKR plasticity. Our results unveil a direction-selective cortico-brainstem pathway that adaptively modulates innate behaviors.
感觉皮层通过靶向系统发生古老的脑干核团的皮质传出投射来调节先天行为。然而,这些投射的功能连接背后的原则仍知之甚少。在这里,我们表明,投射到视束和背端核(NOT-DTN)的小鼠视觉皮层神经元具有不同的反应特性和解剖连接性,支持了基本的先天眼球运动,即光运动反射(OKR)的适应。我们发现这些皮质传出神经元在特定的视觉区域中丰富,并且它们偏爱颞侧-鼻侧的视觉运动,与下游 NOT-DTN 神经元的方向偏向一致。值得注意的是,连续的 OKR 刺激选择性地增强了这些颞侧-鼻侧偏向的皮质神经元的活性,这可以有效地促进 OKR 可塑性。最后,我们证明,沉默专门投射到动眼运动可塑性的关键结构橄榄核下的下游 NOT-DTN 神经元会损害 OKR 和 OKR 可塑性的皮质调节。我们的结果揭示了一种具有方向选择性的皮质-脑干通路,可自适应地调节先天行为。