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母性行为相关经验导致的皮质周边神经毡网络的偏侧化表达依赖于 MeCP2。

Lateralized Expression of Cortical Perineuronal Nets during Maternal Experience is Dependent on MECP2.

机构信息

Department of Biochemistry and Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996.

Department of Biochemistry and Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996

出版信息

eNeuro. 2020 Jun 11;7(3). doi: 10.1523/ENEURO.0500-19.2020. Print 2020 May/Jun.

Abstract

Cortical neuronal circuits along the sensorimotor pathways are shaped by experience during critical periods of heightened plasticity in early postnatal development. After closure of critical periods, measured histologically by the formation and maintenance of extracellular matrix structures called perineuronal nets (PNNs), the adult mouse brain exhibits restricted plasticity and maturity. Mature PNNs are typically considered to be stable structures that restrict synaptic plasticity on cortical parvalbumin+ (PV+) GABAergic neurons. Changes in environment (i.e., novel behavioral training) or social contexts (i.e., motherhood) are known to elicit synaptic plasticity in relevant neural circuitry. However, little is known about concomitant changes in the PNNs surrounding the cortical PV+ GABAergic neurons. Here, we show novel changes in PNN density in the primary somatosensory cortex (SS1) of adult female mice after maternal experience [called surrogate (Sur)], using systematic microscopy analysis of a whole brain region. On average, PNNs were increased in the right barrel field and decreased in the left forelimb regions. Individual mice had left hemisphere dominance in PNN density. Using adult female mice deficient in methyl-CpG-binding protein 2 (MECP2), an epigenetic regulator involved in regulating experience-dependent plasticity, we found that MECP2 is critical for this precise and dynamic expression of PNN. Adult naive -heterozygous (Het) females had increased PNN density in specific subregions in both hemispheres before maternal experience, compared with wild-type (WT) littermate controls. The laterality in PNN expression seen in naive Het (NH) was lost after maternal experience in Sur Het (SH) mice, suggesting possible intact mechanisms for plasticity. Together, our results identify subregion and hemisphere-specific alterations in PNN expression in adult females, suggesting extracellular matrix plasticity as a possible neurobiological mechanism for adult behaviors in rodents.

摘要

皮质神经元回路沿着感觉运动通路形成,这是在出生后早期高度可塑性的关键时期通过经验塑造的。关键期关闭后,通过形成和维持称为周围神经网(PNNs)的细胞外基质结构来在组织学上进行测量,成年小鼠大脑表现出有限的可塑性和成熟度。成熟的 PNN 通常被认为是稳定的结构,限制皮质 Parvalbumin+(PV+)GABA 能神经元的突触可塑性。环境变化(即新的行为训练)或社会环境(即母亲身份)已知会引发相关神经回路中的突触可塑性。然而,关于围绕皮质 PV+GABA 能神经元的 PNN 周围的伴随变化知之甚少。在这里,我们在经过母体经验的成年雌性小鼠的初级体感皮层(SS1)中显示了 PNN 密度的新变化[称为替代(Sur)],使用整个大脑区域的系统显微镜分析。平均而言,PNN 在右侧桶状皮层区域增加,在左侧前肢区域减少。个别小鼠在 PNN 密度上具有左侧半球优势。使用成年雌性小鼠缺乏甲基-CpG 结合蛋白 2(MECP2),一种参与调节经验依赖性可塑性的表观遗传调节剂,我们发现 MECP2 对于 PNN 的这种精确和动态表达至关重要。与野生型(WT)同窝对照相比,在母体经验之前,成年雌性 MECP2 杂合(Het)缺乏的小鼠在两个半球的特定亚区中都具有增加的 PNN 密度。在 Sur Het(SH)小鼠中,在母体经验后,在母体经验之前在 Naive Het(NH)中看到的 PNN 表达的偏侧性丧失,这表明可能存在用于可塑性的完整机制。总之,我们的结果确定了成年雌性中 PNN 表达的亚区和半球特异性改变,这表明细胞外基质可塑性是成年啮齿动物行为的可能神经生物学机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c732/7294466/bfe2a0c05f25/SN-ENUJ200110F001.jpg

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