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Impaired eyeblink conditioning in 78kDa-glucose regulated protein (GRP78)/Immunoglobulin Binding Protein (BiP) conditional knockout mice

机译:78kDa葡萄糖调节蛋白(GRP78)/免疫球蛋白结合蛋白(BiP)条件性基因敲除小鼠的眨眼条件受损

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摘要

Evidence grows that the cerebellum and its associated circuitry are the essential neural substrates for standard delay classical eyeblink conditioning. To further investigate the relative roles of the cerebellar cortex and nuclei in eyeblink conditioning, a novel mouse model with Purkinje cell atrophy was studied. The 78kDa-glucose regulated protein, a chaperone molecule, was knocked out leading to postnatal Purkinje cell degeneration (Wang et al., 2010), and standard delay eyeblink conditioning was performed in the conditional knockout mice. Learning was impaired, yet not completely prevented. Histological studies showed a reduction in the cell number and the size of the anterior interpositus nucleus. When the anterior interpositus nucleus was lesioned bilaterally, eyeblink conditioning was completely prevented. The important roles of both cerebellar cortex and AIP nucleus in eyeblink conditioning were seen.
机译:越来越多的证据表明,小脑及其相关电路是标准延迟经典眨眼调节的必要神经基础。为了进一步研究小脑皮层和核在眨眼条件中的相对作用,研究了具有浦肯野细胞萎缩的新型小鼠模型。敲除78kDa-葡萄糖调节蛋白,一种伴侣分子,导致出生后的浦肯野细胞变性(Wang等,2010),并在条件性基因敲除小鼠中进行标准的延迟眨眼调节。学习受损,但并未完全阻止。组织学研究显示,细胞数量减少,前房间核数目减少。当双侧前位间核受累时,眨眼条件得到完全防止。小脑皮层和AIP核在眨眼调节中都起着重要作用。

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