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锚蛋白 B 促进小鼠前额皮质的发育性脊柱调节。

Ankyrin B promotes developmental spine regulation in the mouse prefrontal cortex.

机构信息

Department of Biochemistry and Biophysics, University of North Carolina School of Medicine at Chapel Hill, Campus Box 7260, Chapel Hill, NC, 27599, United States.

出版信息

Cereb Cortex. 2023 Oct 9;33(20):10634-10648. doi: 10.1093/cercor/bhad311.

Abstract

Postnatal regulation of dendritic spine formation and refinement in cortical pyramidal neurons is critical for excitatory/inhibitory balance in neocortical networks. Recent studies have identified a selective spine pruning mechanism in the mouse prefrontal cortex mediated by class 3 Semaphorins and the L1 cell adhesion molecules, neuron-glia related cell adhesion molecule, Close Homolog of L1, and L1. L1 cell adhesion molecules bind Ankyrin B, an actin-spectrin adaptor encoded by Ankyrin2, a high-confidence gene for autism spectrum disorder. In a new inducible mouse model (Nex1Cre-ERT2: Ank2flox: RCE), Ankyrin2 deletion in early postnatal pyramidal neurons increased spine density on apical dendrites in prefrontal cortex layer 2/3 of homozygous and heterozygous Ankyrin2-deficient mice. In contrast, Ankyrin2 deletion in adulthood had no effect on spine density. Sema3F-induced spine pruning was impaired in cortical neuron cultures from Ankyrin B-null mice and was rescued by re-expression of the 220 kDa Ankyrin B isoform but not 440 kDa Ankyrin B. Ankyrin B bound to neuron-glia related CAM at a cytoplasmic domain motif (FIGQY1231), and mutation to FIGQH inhibited binding, impairing Sema3F-induced spine pruning in neuronal cultures. Identification of a novel function for Ankyrin B in dendritic spine regulation provides insight into cortical circuit development, as well as potential molecular deficiencies in autism spectrum disorder.

摘要

出生后调节皮质锥体神经元树突棘的形成和细化对于新皮质网络中兴奋性/抑制性平衡至关重要。最近的研究已经确定了一种选择性的树突棘修剪机制,该机制在小鼠前额叶皮层中由第 3 类 Semaphorin 和 L1 细胞粘附分子、神经元-胶质相关细胞粘附分子、Close Homolog of L1 和 L1 介导。L1 细胞粘附分子结合锚蛋白 B,锚蛋白 B 是由 Ankyrin2 编码的肌动蛋白- spectrin 接头蛋白,是自闭症谱系障碍的高可信度基因。在一种新的诱导型小鼠模型(Nex1Cre-ERT2:Ank2flox:RCE)中,早期 postnatal 锥体神经元中的 Ankyrin2 缺失增加了同型和杂合型 Ankyrin2 缺失小鼠前额叶皮层 2/3 层中树突棘密度。相比之下,成年期的 Ankyrin2 缺失对树突棘密度没有影响。在缺乏 Ankyrin B 的皮质神经元培养物中,Sema3F 诱导的树突棘修剪受损,并且通过重新表达 220 kDa Ankyrin B 同工型而不是 440 kDa Ankyrin B 得到挽救。Ankyrin B 与神经元-胶质相关 CAM 结合在细胞质结构域基序(FIGQY1231)上,并且突变到 FIGQH 抑制结合,从而破坏神经元培养物中的 Sema3F 诱导的树突棘修剪。鉴定出 Ankyrin B 在树突棘调节中的新功能为皮质回路发育以及自闭症谱系障碍中的潜在分子缺陷提供了深入了解。

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