Goldblatt Dena, Rosti Başak, Hamling Kyla R, Leary Paige, Panchal Harsh, Li Marlyn, Gelnaw Hannah, Huang Stephanie, Quainoo Cheryl, Schoppik David
Depts. of Otolaryngology, Neuroscience & Physiology, and the Neuroscience Institute, NYU Langone Health.
Center for Neural Science, New York University.
bioRxiv. 2024 Jan 27:2024.01.25.577261. doi: 10.1101/2024.01.25.577261.
Sensorimotor reflex circuits engage distinct neuronal subtypes, defined by precise connectivity, to transform sensation into compensatory behavior. Whether and how motor neuron populations specify the subtype fate and/or sensory connectivity of their pre-motor partners remains controversial. Here, we discovered that motor neurons are dispensable for proper connectivity in the vestibular reflex circuit that stabilizes gaze. We first measured activity following vestibular sensation in pre-motor projection neurons after constitutive loss of their extraocular motor neuron partners. We observed normal responses and topography indicative of unchanged functional connectivity between sensory neurons and projection neurons. Next, we show that projection neurons remain anatomically and molecularly poised to connect appropriately with their downstream partners. Lastly, we show that the transcriptional signatures that typify projection neurons develop independently of motor partners. Our findings comprehensively overturn a long-standing model: that connectivity in the circuit for gaze stabilization is retrogradely determined by motor partner-derived signals. By defining the contribution of motor neurons to specification of an archetypal sensorimotor circuit, our work speaks to comparable processes in the spinal cord and advances our understanding of general principles of neural development.
感觉运动反射回路利用由精确连接定义的不同神经元亚型,将感觉转化为补偿行为。运动神经元群体是否以及如何指定其运动前伙伴的亚型命运和/或感觉连接仍存在争议。在这里,我们发现运动神经元对于稳定注视的前庭反射回路中的正确连接是可有可无的。我们首先在眼外运动神经元伙伴组成性缺失后,测量了运动前投射神经元在前庭感觉后的活动。我们观察到正常的反应和拓扑结构,表明感觉神经元和投射神经元之间的功能连接没有改变。接下来,我们表明投射神经元在解剖学和分子水平上仍然准备好与它们的下游伙伴进行适当连接。最后,我们表明代表投射神经元的转录特征独立于运动伙伴而发展。我们的发现全面推翻了一个长期存在的模型:即注视稳定回路中的连接是由运动伙伴衍生的信号逆行决定的。通过定义运动神经元对典型感觉运动回路规范的贡献,我们的工作揭示了脊髓中的类似过程,并推进了我们对神经发育一般原则的理解。