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尼曼-匹克C型转录本在啮齿动物小脑体内和体外的表达。

Expression of Niemann-Pick type C transcript in rodent cerebellum in vivo and in vitro.

作者信息

Falk T, Garver W S, Erickson R P, Wilson J M, Yool A J

机构信息

Department of Physiology, University of Arizona College of Medicine, Tucson, AZ 85724-5051, USA.

出版信息

Brain Res. 1999 Aug 21;839(1):49-57. doi: 10.1016/s0006-8993(99)01678-9.

Abstract

This study assesses the developmental expression of the Niemann-Pick type C mRNA in vivo and in vitro in rat cerebellum. NPC is an autosomal recessive neurovisceral lipid storage disease associated with an alteration in cholesterol trafficking. In the mouse model of NPC and in the early onset form of human NPC, Purkinje neurons are among the first neurological targets, suffering stunted growth during postnatal development and dying, leading to ataxia. Recently, the genes responsible for human (NPC1) and mouse (Npc1) NPC disease have been cloned. Based on a highly homologous domain, we designed primers to look for levels of Npc1 mRNA with a semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR) approach using cyclophilin as an internal standard. Total RNA was isolated from various postnatal developmental stages of the rat cerebellum as template for the analyses. Npc1 transcripts were observed at postnatal day 0 and at later stages of development, both in vivo and in vitro from primary cerebellar cultures. To identify the location of Npc1 inside the cerebellum, we performed immunostaining with an anti-Npc1 antibody in primary rat cerebellar cultures identifying reactive Purkinje neurons by double-labeling with the Purkinje specific marker calbindin and sub-populations of glial cells. In summary, Npc1 is expressed in rat cerebellum in vivo and in vitro and is expressed during early postnatal development as well as in the adult cerebellum. Since Npc1 is expressed at similar levels throughout development, the vulnerability of Purkinje neurons to this disease is likely to involve disruption of an interaction with other developmentally-regulated proteins.

摘要

本研究评估了尼曼-匹克C型(Niemann-Pick type C, NPC)mRNA在大鼠小脑体内和体外的发育表达情况。NPC是一种常染色体隐性神经内脏脂质贮积病,与胆固醇转运改变有关。在NPC的小鼠模型以及人类早发型NPC中,浦肯野神经元是最早受到影响的神经靶点之一,在出生后发育过程中生长受阻并死亡,导致共济失调。最近,导致人类(NPC1)和小鼠(Npc1)NPC疾病的基因已被克隆。基于一个高度同源的结构域,我们设计了引物,以亲环蛋白为内参,采用半定量逆转录-聚合酶链反应(RT-PCR)方法来检测Npc1 mRNA的水平。从大鼠小脑的各个出生后发育阶段分离总RNA作为分析模板。在出生后第0天以及发育后期,在体内和体外原代小脑培养物中均观察到了Npc1转录本。为了确定Npc1在小脑内的位置,我们在原代大鼠小脑培养物中用抗Npc1抗体进行免疫染色,通过与浦肯野细胞特异性标志物钙结合蛋白双标记来鉴定反应性浦肯野神经元以及胶质细胞亚群。总之,Npc1在大鼠小脑的体内和体外均有表达,在出生后早期发育以及成年小脑中也有表达。由于Npc1在整个发育过程中表达水平相似,浦肯野神经元对这种疾病的易感性可能涉及与其他发育调控蛋白相互作用的破坏。

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