Bistrong Karina, Somaiya Rachana Deven, Liang Eugene Y, Smith Benjamin E, Feller Marla B
Department of Neuroscience & Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, CA 94720, USA.
Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA 94720, USA.
Cell Rep. 2025 Jul 22;44(7):115897. doi: 10.1016/j.celrep.2025.115897. Epub 2025 Jun 24.
The optokinetic reflex (OKR), which stabilizes images on the retina as a mouse navigates its environment, originates in direction-selective ganglion cells (DSGCs). A mouse model that lacks cholinergic retinal waves, the β2-nAChR-KO mouse, does not develop horizontal direction selectivity but preserves vertical direction selectivity. Here, we demonstrate that the absence of horizontal direction selectivity in β2-nAChR-KO mice results in a loss of the OKR along the horizontal axis, consistent with previous findings on optomotor response. In addition, we observe diminished asymmetric inhibition onto horizontal-preferring DSGCs. In contrast, OKR along the vertical axis and asymmetric inhibition onto vertical-preferring DSGCs is maintained. Dual whole-cell voltage-clamp recordings show that this decrease in asymmetric inhibition is attributable to a reduction in GABAergic conductance between horizontal-preferring DSGCs and their presynaptic partner. These results indicate that, before the onset of vision, spontaneous activity selectively influences the formation of precise wiring essential for motion detection along the horizontal axis.
视动反射(OKR)可在小鼠在其环境中导航时稳定视网膜上的图像,它起源于方向选择性神经节细胞(DSGCs)。缺乏胆碱能视网膜波的小鼠模型,即β2 - nAChR基因敲除小鼠,不会形成水平方向选择性,但保留垂直方向选择性。在这里,我们证明β2 - nAChR基因敲除小鼠中水平方向选择性的缺失导致沿水平轴的OKR丧失,这与之前关于视动反应的研究结果一致。此外,我们观察到对偏好水平方向的DSGCs的不对称抑制减弱。相比之下,沿垂直轴的OKR以及对偏好垂直方向的DSGCs的不对称抑制得以维持。双全细胞膜电压钳记录表明,这种不对称抑制的减少归因于偏好水平方向的DSGCs与其突触前伙伴之间GABA能电导的降低。这些结果表明,在视觉开始之前,自发活动选择性地影响沿水平轴进行运动检测所必需的精确布线的形成。