Suppr超能文献

不同的蛋白脂质蛋白突变体表现出独特的代谢缺陷。

Different proteolipid protein mutants exhibit unique metabolic defects.

机构信息

*Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, Detroit, MI 48201, USA.

出版信息

ASN Neuro. 2009 Aug 25;1(3):e00014. doi: 10.1042/AN20090028.

Abstract

PMD (Pelizaeus-Merzbacher disease), a CNS (central nervous system) disease characterized by shortened lifespan and severe neural dysfunction, is caused by mutations of the PLP1 (X-linked myelin proteolipid protein) gene. The majority of human PLP1 mutations are caused by duplications; almost all others are caused by missense mutations. The cellular events leading to the phenotype are unknown. The same mutations in non-humans make them ideal models to study the mechanisms that cause neurological sequelae. In the present study we show that mice with Plp1 duplications (Plp1tg) have major mitochondrial deficits with a 50% reduction in ATP, a drastically reduced mitochondrial membrane potential and increased numbers of mitochondria. In contrast, the jp (jimpy) mouse with a Plp1 missense mutation exhibits normal mitochondrial function. We show that PLP in the Plp1tg mice and in Plp1-transfected cells is targeted to mitochondria. PLP has motifs permissive for insertion into mitochondria and deletions near its N-terminus prevent its co-localization to mitochondria. These novel data show that Plp1 missense mutations and duplications of the native Plp1 gene initiate uniquely different cellular responses.

摘要

佩利兹-梅布症(Pelizaeus-Merzbacher disease)是一种中枢神经系统(central nervous system)疾病,其特点是寿命缩短和严重的神经功能障碍,由 PLP1(X 连锁髓鞘蛋白脂蛋白)基因突变引起。大多数人类 PLP1 突变是由重复引起的;几乎所有其他突变都是由错义突变引起的。导致表型的细胞事件尚不清楚。非人类的相同突变使它们成为研究导致神经后遗症机制的理想模型。在本研究中,我们表明 Plp1 重复(Plp1tg)的小鼠有主要的线粒体缺陷,ATP 减少 50%,线粒体膜电位急剧降低,线粒体数量增加。相比之下,具有 Plp1 错义突变的 jp(jimpy)小鼠表现出正常的线粒体功能。我们表明 Plp1tg 小鼠和转染 Plp1 的细胞中的 PLP 被靶向到线粒体。PLP 具有允许插入线粒体的基序,并且其 N 端附近的缺失阻止其与线粒体共定位。这些新数据表明,Plp1 错义突变和天然 Plp1 基因的重复引发了独特的不同细胞反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9b5/2810813/5ee7fd47832f/an001e014f01.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验