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本文引用的文献

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Protein Phosphatase 2B Dual Function Facilitates Synaptic Integrity and Motor Learning.蛋白磷酸酶 2B 双重功能促进突触完整性和运动学习。
J Neurosci. 2021 Jun 30;41(26):5579-5594. doi: 10.1523/JNEUROSCI.1741-20.2021. Epub 2021 May 21.
2
Differential spatiotemporal development of Purkinje cell populations and cerebellum-dependent sensorimotor behaviors.浦肯野细胞群体和小脑依赖的感觉运动行为的差异时空发育。
Elife. 2021 May 11;10:e63668. doi: 10.7554/eLife.63668.
3
TRPC3 is a major contributor to functional heterogeneity of cerebellar Purkinje cells.TRPC3 是小脑浦肯野细胞功能异质性的主要贡献者。
Elife. 2019 Sep 5;8:e45590. doi: 10.7554/eLife.45590.
4
Impaired cerebellar Purkinje cell potentiation generates unstable spatial map orientation and inaccurate navigation.小脑浦肯野细胞增强受损导致不稳定的空间地图定向和不准确的导航。
Nat Commun. 2019 May 21;10(1):2251. doi: 10.1038/s41467-019-09958-5.
5
Aberrant Development and Synaptic Transmission of Cerebellar Cortex in a VPA Induced Mouse Autism Model.丙戊酸诱导的小鼠自闭症模型中小脑皮质的异常发育和突触传递
Front Cell Neurosci. 2018 Dec 21;12:500. doi: 10.3389/fncel.2018.00500. eCollection 2018.
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Normal cognitive and social development require posterior cerebellar activity.正常的认知和社会发展需要小脑后部的活动。
Elife. 2018 Sep 20;7:e36401. doi: 10.7554/eLife.36401.
7
Neonatal brain injury causes cerebellar learning deficits and Purkinje cell dysfunction.新生儿脑损伤导致小脑学习缺陷和浦肯野细胞功能障碍。
Nat Commun. 2018 Aug 13;9(1):3235. doi: 10.1038/s41467-018-05656-w.
8
Gaze distribution analysis and saliency prediction across age groups.注视点分布分析及在各年龄组中的显著度预测
PLoS One. 2018 Feb 23;13(2):e0193149. doi: 10.1371/journal.pone.0193149. eCollection 2018.
9
Cortico-fugal output from visual cortex promotes plasticity of innate motor behaviour.来自视觉皮层的皮质-离心输出促进先天性运动行为的可塑性。
Nature. 2016 Oct 20;538(7625):383-387. doi: 10.1038/nature19818. Epub 2016 Oct 12.
10
Development and learning of saccadic eye movements in 7- to 42-month-old children.7至42个月大儿童扫视眼动的发育与学习
J Vis. 2016;16(1):6. doi: 10.1167/16.1.6.

蛋白磷酸酶2B依赖性小脑可塑性决定幼年发育期间前庭眼反射的幅度。

PP2B-Dependent Cerebellar Plasticity Sets the Amplitude of the Vestibulo-ocular Reflex during Juvenile Development.

作者信息

Wu Bin, Post Laura, Lin Zhanmin, Schonewille Martijn

机构信息

Department of Neurology & National Clinical Research Center for Aging and Medicine, Huashan Hospital, Fudan University, Shanghai 200040, China

Department of Neuroscience, Erasmus MC, Rotterdam 3015CN, The Netherlands.

出版信息

J Neurosci. 2024 Apr 24;44(17):e1211232024. doi: 10.1523/JNEUROSCI.1211-23.2024.

DOI:10.1523/JNEUROSCI.1211-23.2024
PMID:38527808
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11044099/
Abstract

Throughout life, the cerebellum plays a central role in the coordination and optimization of movements, using cellular plasticity to adapt a range of behaviors. Whether these plasticity processes establish a fixed setpoint during development, or continuously adjust behaviors throughout life, is currently unclear. Here, by spatiotemporally manipulating the activity of protein phosphatase 2B (PP2B), an enzyme critical for cerebellar plasticity in male and female mice, we examined the consequences of disrupted plasticity on the performance and adaptation of the vestibulo-ocular reflex (VOR). We find that, in contrast to Purkinje cell (PC)-specific deletion starting early postnatally, acute pharmacological as well as adult-onset genetic deletion of PP2B affects all forms of VOR adaptation but not the level of VOR itself. Next, we show that PC-specific genetic deletion of PP2B in juvenile mice leads to a progressive loss of the protein PP2B and a concurrent change in the VOR, in addition to the loss of adaptive abilities. Finally, re-expressing PP2B in adult mice that lack PP2B expression from early development rescues VOR adaptation but does not affect the performance of the reflex. Together, our results indicate that chronic or acute, genetic, or pharmacological block of PP2B disrupts the adaptation of the VOR. In contrast, only the absence of plasticity during cerebellar development affects the setpoint of VOR, an effect that cannot be corrected after maturation of the cerebellum. These findings suggest that PP2B-dependent cerebellar plasticity is required during a specific period to achieve the correct setpoint of the VOR.

摘要

在整个生命过程中,小脑在运动的协调和优化中发挥着核心作用,利用细胞可塑性来适应一系列行为。目前尚不清楚这些可塑性过程是在发育过程中建立一个固定的设定点,还是在整个生命过程中持续调整行为。在这里,通过时空操纵蛋白磷酸酶2B(PP2B)的活性(PP2B是一种对雄性和雌性小鼠小脑可塑性至关重要的酶),我们研究了可塑性破坏对前庭眼反射(VOR)的表现和适应性的影响。我们发现,与出生后早期开始的浦肯野细胞(PC)特异性缺失不同,PP2B的急性药理学以及成年期基因缺失会影响VOR的所有形式的适应性,但不会影响VOR本身的水平。接下来,我们表明,幼年小鼠中PC特异性基因缺失PP2B会导致PP2B蛋白逐渐丧失,VOR同时发生变化,此外还会丧失适应能力。最后,在从早期发育就缺乏PP2B表达的成年小鼠中重新表达PP2B可以挽救VOR适应性,但不会影响反射的表现。总之,我们的结果表明,PP2B的慢性或急性、基因或药理学阻断会破坏VOR的适应性。相比之下,只有小脑发育过程中可塑性的缺失会影响VOR的设定点,这种影响在小脑成熟后无法纠正。这些发现表明,在特定时期需要PP2B依赖的小脑可塑性来实现VOR的正确设定点。