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髓鞘碱性蛋白的分子生物学:髓鞘缺陷突变体中的基因重排及反义RNA表达

Molecular biology of myelin basic protein: gene rearrangement and expression of anti-sense RNA in myelin-deficient mutants.

作者信息

Mikoshiba K, Aruga J, Okano H

机构信息

Division of Regulation of Macromolecular Function, Osaka University, Japan.

出版信息

Comp Biochem Physiol C Comp Pharmacol Toxicol. 1991;98(1):51-61.

PMID:1709079
Abstract
  1. Myelin is an important structure for facilitating the conduction of impulses along the axons both in the central nervous system (CNS) and peripheral nervous system (PNS). 2. Myelin basic protein (MBP) is a major protein in CNS myelin. 3. MBP is expressed specifically in the nervous system. 4. The MBP gene has been cloned and characterized. 5. Two mutant mice, Shiverer (shi) and myelin-deficient (mld. shimid), are autosomal recessive mutants that show severe symptoms such as intentional tremor. They have been found to have a mutation in the MBP gene that results in poor myelination in the central nervous system. 6. It was found that rearrangement within the MBP gene results in low expression of the gene. 7. In Shiverer, the MBP gene is partially deleted (from exons 3 to 7), and in mld, the gene is duplicated tandemly and a large portion of the duplication is inverted upstream of the intact copy. 8. In mld, anti-sense RNA complementary to exons 3-7, which correspond to the inverted segment, was detected by RNase protection studies, and presumed to be responsible for the reduced expressions of MBP. 9. The mechanism of gene rearrangement in MBP was also characterized. 10. This article reviews the recent progress in the study of the MBP gene, especially the rearrangement of the gene and its expression in mutant mice.
摘要
  1. 髓磷脂是一种重要结构,有助于在中枢神经系统(CNS)和外周神经系统(PNS)中沿轴突传导冲动。2. 髓磷脂碱性蛋白(MBP)是中枢神经系统髓磷脂中的一种主要蛋白质。3. MBP在神经系统中特异性表达。4. MBP基因已被克隆并进行了表征。5. 两种突变小鼠,颤抖鼠(shi)和髓磷脂缺陷鼠(mld. shimid),是常染色体隐性突变体,表现出严重症状,如意向性震颤。已发现它们的MBP基因发生突变,导致中枢神经系统髓鞘形成不良。6. 发现MBP基因内的重排导致该基因低表达。7. 在颤抖鼠中,MBP基因部分缺失(从外显子3到7),而在mld中,该基因串联重复,且大部分重复片段在完整拷贝的上游发生倒置。8. 在mld中,通过核糖核酸酶保护研究检测到与对应于倒置片段的外显子3 - 7互补的反义RNA,并推测其是MBP表达降低的原因。9. MBP基因重排的机制也得到了表征。10. 本文综述了MBP基因研究的最新进展,特别是该基因的重排及其在突变小鼠中的表达。

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