McKeown Caroline R, Schiapparelli Lucio M, Cline Hollis T
The Scripps Research Institute, Neuroscience Department and Dorris Neuroscience Center, La Jolla, CA, USA.
Bio Protoc. 2025 Aug 20;15(16):e5419. doi: 10.21769/BioProtoc.5419.
The process of moving proteins and organelles along the axon is essential for neuronal survival and function, ensuring proper communication between the cell body and distant synapses. The efficient and precise delivery of proteins via axon transport is critical for processes ranging from synaptic plasticity and neurotransmission to neuronal growth and maintenance. However, the identities of all the transported proteins have only recently begun to be investigated. Retinal ganglion cells (RGCs) provide a unique opportunity for access to central nervous system (CNS) axons as the retina is located outside the brain in the eye, with long axonal projections (~1 cm in mouse) that innervate the brain. We have developed and optimized methods for unbiased in vivo protein labeling in rodent RGC somata with intravitreal -hydroxysuccinimido (NHS)-biotin and subsequent visualization of transported proteins along the optic nerve using confocal microscopy. Here, we describe these procedures in detail. Key features • Expands on the intravitreal injection method presented in Schiapparelli et al. [1] and extends it to whole mount optic nerve immunolabeling. • Unbiased in vivo labeling of proteins in the mouse central nervous system. • Optimized mouse intravitreal injection procedure using glass needles to reduce injury and costs. • Immunofluorescent imaging of the cleared intact optic nerve to visualize transported labeled proteins.
蛋白质和细胞器沿轴突移动的过程对于神经元的存活和功能至关重要,可确保细胞体与远处突触之间的正常通讯。通过轴突运输高效且精确地递送蛋白质对于从突触可塑性、神经传递到神经元生长和维持等一系列过程都至关重要。然而,所有被运输蛋白质的身份直到最近才开始被研究。视网膜神经节细胞(RGCs)为研究中枢神经系统(CNS)轴突提供了独特的机会,因为视网膜位于眼睛中的脑外,其长轴突投射(小鼠中约1厘米)支配大脑。我们已经开发并优化了在啮齿动物RGC胞体中使用玻璃体内N-羟基琥珀酰亚胺(NHS)-生物素进行无偏倚体内蛋白质标记的方法,随后使用共聚焦显微镜观察沿视神经运输的蛋白质。在此,我们详细描述这些程序。关键特性:• 扩展了Schiapparelli等人[1]提出的玻璃体内注射方法,并将其扩展到全量视神经免疫标记。• 对小鼠中枢神经系统中的蛋白质进行无偏倚体内标记。• 使用玻璃针优化小鼠玻璃体内注射程序以减少损伤和成本。• 对清除后的完整视神经进行免疫荧光成像以可视化运输的标记蛋白质。