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N-Acetylgalactosamine Positive Perineuronal Nets in the Saccade-Related-Part of the Cerebellar Fastigial Nucleus Do Not Maintain Saccade Gain

机译:小脑小脑顶核的视视相关部分的N-乙酰半乳糖胺阳性神经外神经网不维持视听增益。

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摘要

Perineuronal nets (PNNs) accumulate around neurons near the end of developmental critical periods. PNNs are structures of the extracellular matrix which surround synaptic contacts and contain chondroitin sulfate proteoglycans. Previous studies suggest that the chondroitin sulfate chains of PNNs inhibit synaptic plasticity and thereby help end critical periods. PNNs surround a high proportion of neurons in the cerebellar nuclei. These PNNs form during approximately the same time that movements achieve normal accuracy. It is possible that PNNs in the cerebellar nuclei inhibit plasticity to maintain the synaptic organization that produces those accurate movements. We tested whether or not PNNs in a saccade-related part of the cerebellar nuclei maintain accurate saccade size by digesting a part of them in an adult monkey performing a task that changes saccade size (long term saccade adaptation). We use the enzyme Chondroitinase ABC to digest the glycosaminoglycan side chains of proteoglycans present in the majority of PNNs. We show that this manipulation does not result in faster, larger, or more persistent adaptation. Our result indicates that intact perineuronal nets around saccade-related neurons in the cerebellar nuclei are not important for maintaining long-term saccade gain.
机译:神经周围神经网(PNN)在发育关键时期即将结束时聚集在神经元周围。 PNN是胞外基质的结构,围绕突触接触并包含硫酸软骨素蛋白聚糖。先前的研究表明,PNN的硫酸软骨素链可抑制突触可塑性,从而有助于结束关键时期。 PNN围绕小脑核中很大比例的神经元。这些PNN大约在运动达到正常精度的同时形成。小脑核中的PNN可能会抑制可塑性,以维持产生那些精确运动的突触组织。我们测试了小脑核与扫视相关的部分中的PNN是否通过在成年猴子中消化一部分PNNs来维持准确的扫视大小,该成年猴子执行了改变扫视大小的任务(长期扫视适应)。我们使用软骨素酶ABC酶消化大多数PNN中存在的蛋白聚糖的糖胺聚糖侧链。我们表明,这种操纵不会导致更快,更大或更持久的适应。我们的结果表明,小脑核中与扫视相关的神经元周围的完整神经周围神经网络对于维持长期的扫视增益并不重要。

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