首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Deletion of exons encoding carboxypeptidase domain of Nna1 results in Purkinje cell degeneration ( pcd pcd ) phenotype
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Deletion of exons encoding carboxypeptidase domain of Nna1 results in Purkinje cell degeneration ( pcd pcd ) phenotype

机译:缺失NNA1的羧基肽酶结构域的外显子导致Purkinje细胞变性(PCD PCD)表型

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摘要

Abstract Purkinje cell degeneration ( pcd ) was first identified in a spontaneous mouse mutant showing cerebellar ataxia. In addition to cerebellar Purkinje cells ( PC s), retinal photoreceptors, mitral cells in the olfactory bulb, and a discrete subpopulation of thalamic neurons also degenerate in the mutant brains. The gene responsible for the pcd mutant is Nna1 , also known as ATP / GTP binding protein 1 or cytosolic carboxypeptidase‐like 1, which encodes a zinc carboxypeptidase protein. To investigate pathogenesis of the pcd mutation in detail, we generated a conditional Nna1 allele targeting the carboxypeptidase domain at C‐terminus. After Cre recombination and heterozygous crossing, we generated Nna1 knockout ( KO ) mice and found that the Nna1 KO mice began to show cerebellar ataxia at postnatal day 20 (P20). Most PC s degenerated until 4‐week‐old, except lobule X. Activated microglia and astrocytes were also observed in the Nna1 KO cerebellum. In the mutant brain, the Nna1 mRNA level was dramatically reduced, suggesting that nonsense‐mediated mRNA decay occurs in it. Since the Nna1 protein acts as a de‐glutamatase on the C‐terminus of α‐tubulin and β‐tubulin, increased polyglutamylated tubulin was detected in the Nna1 KO cerebellum. In addition, the endoplasmic reticulum stress marker, C/EBP homologous protein ( CHOP ), was up‐regulated in the mutant PC s. We report the generation of a functional Nna1 conditional allele and possible mechanisms of PC death in the Nna1 KO in the cerebellum. Open Practices This article has received a badge for *Open Materials* because it provided all relevant information to reproduce the study in the manuscript. The complete Open Science Disclosure form for this article can be found at the end of the article. More information about the Open Practices badges can be found at https://cos.io/our-services/open-science-badges/ .
机译:摘要Purkinje细胞变性(PCD)首先在出现小脑突变体中鉴定出明脑共济失调。除了小脑purkinje细胞(PC S)外,视网膜感光体,嗅灯泡中的二尖瓣细胞以及丘脑神经元的离散亚群也在突变脑中堕落。负责PCD突变体的基因是NNA1,也称为ATP / GTP结合蛋白1或细胞溶质羧肽酶样1,其编码羧酸锌酶蛋白。为了详细研究PCD突变的发病机制,我们在C-末端产生了靶向羧肽酶结构域的条件NNA1等位基因。在CRE重组和杂合的交叉后,我们产生NNA1敲除(KO)小鼠,发现NNA1 KO小鼠在后期20(P20)中开始显示小脑共济失调。大多数PC S退化直到4周龄,除了Lobule X.在NNA1 KO小脑中也观察到活化的微胶质细胞和星形胶质细胞。在突变体脑中,纳米1 mRNA水平显着减少,表明废物介导的mRNA衰变发生在其中。由于NNA1蛋白在α-微管蛋白和β-微管蛋白的C末端作用作为去谷氨酸酶,因此在NNA1KO小胞胎中检测到增加的聚谷酰胺化管蛋白。此外,内质网应激标记物,C / EBP同源蛋白(Chec)在突变体PC S中上调。我们在小脑中报告了在小脑中NNA1 KO中的功能性NNA1条件等位基因和可能的PC死亡机制。开放实践本文已收到*开放材料的徽章*,因为它提供了所有相关信息,以在手稿中复制研究。本文的完整开放科学披露表格可以在文章的末尾找到。有关开放实践徽章的更多信息,请访问https://cos.io/our-services/open-cience-badges/。

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