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鼠视网膜中的突触结合蛋白-9。

Synaptotagmin-9 in mouse retina.

机构信息

Truhlsen Eye Institute and Department of Ophthalmology and Visual Sciences, University of Nebraska Medical Center, Omaha, NE, USA.

Pharmacology and Experimental Neuroscience, University of Nebraska Medical Center, Omaha, NE, USA.

出版信息

Vis Neurosci. 2024 Sep 18;41:E003. doi: 10.1017/S0952523824000026.

Abstract

Synaptotagmin-9 (Syt9) is a Ca sensor mediating fast synaptic release expressed in various parts of the brain. The presence and role of Syt9 in retina is unknown. We found evidence for Syt9 expression throughout the retina and created mice to conditionally eliminate Syt9 in a cre-dependent manner. We crossed Syt9 mice with Rho-iCre, HRGP-Cre, and CMV-Cre mice to generate mice in which Syt9 was eliminated from rods (rod), cones (cone), or whole animals (CMV). CMV mice showed an increase in scotopic electroretinogram (ERG) b-waves evoked by bright flashes with no change in a-waves. Cone-driven photopic ERG b-waves were not significantly different in CMV knockout mice and selective elimination of Syt9 from cones had no effect on ERGs. However, selective elimination from rods decreased scotopic and photopic b-waves as well as oscillatory potentials. These changes occurred only with bright flashes where cone responses contribute. Synaptic release was measured in individual rods by recording anion currents activated by glutamate binding to presynaptic glutamate transporters. Loss of Syt9 from rods had no effect on spontaneous or depolarization-evoked release. Our data show that Syt9 acts at multiple sites in the retina and suggest that it may play a role in regulating transmission of cone signals by rods.

摘要

突触结合蛋白 9(Syt9)是一种 Ca 传感器,介导快速突触释放,在大脑的各个部位表达。Syt9 在视网膜中的存在和作用尚不清楚。我们在整个视网膜中发现了 Syt9 表达的证据,并创建了条件性敲除 Syt9 的小鼠(以 Cre 依赖性方式)。我们将 Syt9 小鼠与 Rho-iCre、HRGP-Cre 和 CMV-Cre 小鼠杂交,以生成 Syt9 从 rods(rod)、cones(cone)或整个动物(CMV)中被消除的小鼠。CMV 小鼠在明亮闪光刺激下的暗视电图(ERG)b 波增加,而 a 波没有变化。CMV 敲除小鼠的 cone 驱动光视 ERG b 波没有明显差异,并且从 cone 中选择性消除 Syt9 对 ERGs 没有影响。然而,从 rods 中选择性消除会降低暗视和光视 b 波以及振荡电位。这些变化仅在 cone 反应有贡献的明亮闪光下发生。通过记录谷氨酸结合到突触前谷氨酸转运体激活的阴离子电流,我们在单个 rods 中测量了突触释放。从 rods 中消除 Syt9 对自发或去极化诱发的释放没有影响。我们的数据表明 Syt9 在视网膜的多个部位起作用,并表明它可能在调节 cone 信号通过 rods 的传递中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f079/11417998/3aa5b41cb0e5/S0952523824000026_fig1.jpg

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