Department of Molecular Biology, Princeton University, Princeton, NJ, USA; Department of Neuroscience, Jefferson Synaptic Biology Center, Sidney Kimmel Medical College at Thomas Jefferson University, 233 South 10th Street, Bluemle Life Sciences Building, Room 324, Philadelphia, PA 19107, USA.
Department of Neuroscience, Jefferson Synaptic Biology Center, Sidney Kimmel Medical College at Thomas Jefferson University, 233 South 10th Street, Bluemle Life Sciences Building, Room 324, Philadelphia, PA 19107, USA.
Neuroscience. 2023 Jan 1;508:137-152. doi: 10.1016/j.neuroscience.2022.11.030. Epub 2022 Nov 29.
Synapse formation between neurons is critical for proper circuit and brain function. Prior to activity-dependent refinement of connections between neurons, activity-independent cues regulate the contact and recognition of potential synaptic partners. Formation of a synapse results in molecular recognition events that initiate the process of synaptogenesis. Synaptogenesis requires contact between axon and dendrite, selection of correct and rejection of incorrect partners, and recruitment of appropriate pre- and postsynaptic proteins needed for the establishment of functional synaptic contact. Key regulators of these events are families of transsynaptic proteins, where one protein is found on the presynaptic neuron and the other is found on the postsynaptic neuron. Of these families, the EphBs and ephrin-Bs are required during each phase of synaptic development from target selection, recruitment of synaptic proteins, and formation of spines to regulation of synaptic plasticity at glutamatergic spine synapses in the mature brain. These roles also place EphBs and ephrin-Bs as important regulators of human neurological diseases. This review will focus on the role of EphBs and ephrin-Bs at synapses.
神经元之间的突触形成对于正常的电路和大脑功能至关重要。在神经元之间的连接依赖于活动的精细调节之前,非活动依赖性线索调节潜在突触伙伴的接触和识别。突触的形成导致分子识别事件,从而启动突触发生过程。突触发生需要轴突和树突之间的接触、正确和错误伙伴的选择,以及募集建立功能性突触接触所需的适当的突触前和突触后蛋白。这些事件的关键调节剂是跨突触蛋白家族,其中一种蛋白存在于突触前神经元上,另一种蛋白存在于突触后神经元上。在突触发育的每个阶段,包括靶标选择、突触蛋白募集以及形成棘突,以及调节成熟大脑中谷氨酸能棘突突触的突触可塑性,EphB 和 Ephrin-B 家族都是必需的。这些作用也使 EphB 和 Ephrin-B 成为人类神经疾病的重要调节剂。这篇综述将重点介绍 EphB 和 Ephrin-B 在突触中的作用。