Sengupta Mohini, Bertram Alaina, Zhu Shuyu Iris, Goodhill Geoffrey J, Bagnall Martha W
Department of Neuroscience, Washington University School of Medicine, St Louis, Missouri 63110
Department of Biology, Saint Louis University, St Louis, Missouri 63103.
J Neurosci. 2025 Jul 16;45(29):e1530242025. doi: 10.1523/JNEUROSCI.1530-24.2025.
Spinal interneurons shape motor neuron activity. Gata3 V2b neurons are a major inhibitory spinal population. These neurons are present at multiple spinal levels in mice, suggesting an important function in motor control. In zebrafish, our previous work showed that V2b neurons are evenly distributed along the spinal cord, where they act to slow down locomotion. However, the timing of V2b activity during locomotion, their postsynaptic targets other than motor neurons, and their recruitment across different behaviors remain unknown. In this study, we address these questions using larval zebrafish. First, via optogenetic mapping of output in the rostrocaudal axis, we demonstrate that V2b neurons robustly inhibit motor neurons and other major spinal populations, including V2a, V1, commissural neurons, and other V2b neurons. V2b inhibition is patterned along the rostrocaudal axis, providing long-range inhibition to motor and V2a neurons but more localized inhibition of V1 neurons. Next, by recording V2b activity during different visually and electrically evoked movements, we show that V2b neurons are specifically recruited for forward swims and turns, but not for fast escape movements. Furthermore, a subset of V2b neurons also exhibited short-latency sensory-evoked activity preceding motor initiation. Finally, we show that V2b inhibition occurs in phase with the leading edge of the motor burst, in contrast to V1 inhibition which occurs in phase with the falling edge of the motor burst. Taken together, these data show that in axial motor networks, V2b neurons act via multiple targets to produce in phase, leading inhibition during locomotion.
脊髓中间神经元塑造运动神经元的活动。Gata3 V2b神经元是脊髓中主要的抑制性神经元群体。这些神经元在小鼠的多个脊髓节段均有存在,提示其在运动控制中具有重要功能。在斑马鱼中,我们之前的研究表明V2b神经元沿脊髓均匀分布,其作用是减缓运动。然而,V2b神经元在运动过程中的活动时间、除运动神经元外的突触后靶点以及它们在不同行为中的募集情况仍不清楚。在本研究中,我们使用斑马鱼幼体来解决这些问题。首先,通过在前后轴上对输出进行光遗传学映射,我们证明V2b神经元能强烈抑制运动神经元和其他主要的脊髓神经元群体,包括V2a、V1、联合神经元和其他V2b神经元。V2b抑制作用沿前后轴呈模式化分布,对运动神经元和V2a神经元提供长距离抑制,但对V1神经元的抑制作用更局限。接下来,通过记录不同视觉和电诱发运动过程中V2b神经元的活动,我们发现V2b神经元在向前游动和转弯时被特异性募集,但在快速逃避运动中则不然。此外,一部分V2b神经元在运动开始前还表现出短潜伏期的感觉诱发活动。最后,我们发现V2b抑制作用与运动爆发的前沿同步发生,而V1抑制作用则与运动爆发的下降沿同步发生。综上所述,这些数据表明在轴向运动网络中,V2b神经元通过多个靶点发挥作用,在运动过程中产生同步的、领先的抑制作用。