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NMNAT 蛋白既能限制 Wallerian 变性,又能调控视觉皮层的关键期可塑性。

NMNAT Proteins that Limit Wallerian Degeneration Also Regulate Critical Period Plasticity in the Visual Cortex.

机构信息

Molecular Visual Plasticity Group, Netherlands Institute for Neuroscience, Meibergdreef 47, 1105 BA Amsterdam, The Netherlands.

Netherlands Institute for Neuroscience, Meibergdreef 47, 1105 BA Amsterdam, The Netherlands.

出版信息

eNeuro. 2019 Jan 18;6(1). doi: 10.1523/ENEURO.0277-18.2018. eCollection 2019 Jan-Feb.

Abstract

Many brain regions go through critical periods of development during which plasticity is enhanced. These critical periods are associated with extensive growth and retraction of thalamocortical and intracortical axons. Here, we investigated whether a signaling pathway that is central in Wallerian axon degeneration also regulates critical period plasticity in the primary visual cortex (V1). Wallerian degeneration is characterized by rapid disintegration of axons once they are separated from the cell body. This degenerative process is initiated by reduced presence of cytoplasmic nicotinamide mononucleotide adenylyltransferases (NMNATs) and is strongly delayed in mice overexpressing cytoplasmic NMNAT proteins, such as Wld mutant mice producing a UBE4b-NMNAT1 fusion protein or NMNAT3 transgenic mice. Here, we provide evidence that in Wld mice and NMNAT3 transgenic mice, ocular dominance (OD) plasticity in the developing visual cortex is reduced. This deficit is only observed during the second half of the critical period. Additionally, we detect an early increase of visual acuity in the V1 of Wld mice. We do not find evidence for Wallerian degeneration occurring during OD plasticity. Our findings suggest that NMNATs do not only regulate Wallerian degeneration during pathological conditions but also control cellular events that mediate critical period plasticity during the physiological development of the cortex.

摘要

许多大脑区域在发育过程中经历关键期,在此期间可塑性增强。这些关键期与丘脑皮质和皮质内轴突的广泛生长和回缩有关。在这里,我们研究了在初级视觉皮层(V1)中,一个在轴突沃勒变性中起核心作用的信号通路是否也调节关键期可塑性。轴突沃勒变性的特征是一旦轴突与细胞体分离,就会迅速解体。这个退化过程是由细胞质烟酰胺单核苷酸腺嘌呤二核苷酸转移酶(NMNAT)的减少引起的,并且在过度表达细胞质 NMNAT 蛋白的小鼠中被强烈延迟,例如产生 UBE4b-NMNAT1 融合蛋白的 Wld 突变小鼠或 NMNAT3 转基因小鼠。在这里,我们提供的证据表明,在 Wld 小鼠和 NMNAT3 转基因小鼠中,发育中的视觉皮层的眼优势(OD)可塑性降低。这种缺陷仅在关键期的后半段观察到。此外,我们在 Wld 小鼠的 V1 中检测到视力的早期提高。我们没有发现 OD 可塑性过程中发生沃勒变性的证据。我们的研究结果表明,NMNATs 不仅在病理条件下调节沃勒变性,而且还控制在皮层生理发育过程中介导关键期可塑性的细胞事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c03/6338469/55e49e1447a5/enu0011928310001.jpg

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