Gencic S, Hudson L D
Laboratory of Viral and Molecular Pathogenesis, National Institute of Neurologic Disorders and Stroke, Bethesda, Maryland 20892.
J Neurosci. 1990 Jan;10(1):117-24. doi: 10.1523/JNEUROSCI.10-01-00117.1990.
The capacity for synthesizing and maintaining a compact myelin sheath is destroyed in a number of inborn errors of myelin metabolism. One class of hypomyelinating mutations, which displays an X-linked pattern of inheritance, is distinguished by marked disturbances in oligodendrocyte differentiation. We have defined the molecular defect in one such mutant that lacks mature oligodendrocytes, the X-linked jimpy myelin synthesis deficient (jpmsd) trait in mice. The structure of the gene encoding the most abundant myelin protein, proteolipid protein (PLP), was determined by mapping and partially sequencing genomic clones from jpmsd and wild-type mice. Jpmsd mice have a single base change in PLP, a C----T transition in exon 6 that would substitute a valine for alanine in both PLP and its alternatively spliced isoform, DM20. The mutation was confirmed by polymerase chain reaction-amplifying exon 6 from genomic DNA and then either sequencing the amplified DNA or directly probing exon 6 with oligonucleotides designed to detect a single base mismatch. The conservative amino acid replacement in PLP/DM20 of jpmsd mice results in a pleiotropic phenotype similar to that observed for the allelic mutation jimpy, in which a splicing defect has radically altered the PLP/DM20 protein. The accelerated turnover of oligodendrocytes in both mouse mutants suggests a function for PLP/DM20 in oligodendrocyte differentiation distinct from the role of these proteolipid proteins as structural components of the myelin sheath.
在一些髓鞘代谢的先天性缺陷中,合成和维持紧密髓鞘的能力被破坏。一类呈现X连锁遗传模式的髓鞘形成不足突变,其特征是少突胶质细胞分化存在明显紊乱。我们已经确定了一种这样的突变体中的分子缺陷,该突变体缺乏成熟的少突胶质细胞,即小鼠中的X连锁跳跃性髓鞘合成缺陷(jpmsd)性状。通过对来自jpmsd和野生型小鼠的基因组克隆进行定位和部分测序,确定了编码最丰富的髓鞘蛋白蛋白脂蛋白(PLP)的基因结构。Jpmsd小鼠的PLP中有一个单碱基变化,即外显子6中的C到T转换,这将在PLP及其选择性剪接异构体DM20中用缬氨酸替代丙氨酸。通过聚合酶链反应从基因组DNA中扩增外显子6,然后对扩增的DNA进行测序或直接用设计用于检测单碱基错配的寡核苷酸探测外显子6,证实了该突变。Jpmsd小鼠的PLP/DM20中保守的氨基酸替换导致了一种多效性表型,类似于在等位基因突变跳跃性中观察到的表型,在该突变中,剪接缺陷从根本上改变了PLP/DM20蛋白。两种小鼠突变体中少突胶质细胞的加速更新表明PLP/DM20在少突胶质细胞分化中的功能不同于这些蛋白脂蛋白作为髓鞘结构成分的作用。