Mutations in noncoding regions of the proteolipid protein gene in Pelizaeus-Merzbacher disease

被引:42
作者
Hobson, GM
Davis, AP
Stowell, NC
Kolodny, EH
Sistermans, EA
de Coo, IFM
Funanage, VL
Marks, HG
机构
[1] Alfred I Dupont Hosp Children, Res Dept, Wilmington, DE 19899 USA
[2] Thomas Jefferson Univ, Dept Pediat, Philadelphia, PA 19107 USA
[3] Thomas Jefferson Univ, Jefferson Med Coll, Philadelphia, PA 19107 USA
[4] NYU, Sch Med, New York, NY USA
[5] Univ Nijmegen, Med Ctr, Dept Human Genet, Nijmegen, Netherlands
[6] Univ Rotterdam Hosp, Dept Neurol, Rotterdam, Netherlands
[7] Nemours Childrens Clin, Ft Myers, FL USA
关键词
D O I
10.1212/WNL.55.8.1089
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background: Pelizaeus-Merzbacher disease (PMD) is an X-linked recessive dysmyelinating disorder of the CNS. Duplications or point mutations in exons of the proteolipid protein (PLP) gene are found in most patients. Objective: To describe five patients with PMD who have mutations in noncoding regions of the PLP gene. Methods: Quantitative multiplex PCR and Southern blot analyses were used to detect duplication of the PLP gene, and DNA sequence analysis, including exon-intron borders, was used to detect mutation of the PLP gene. Results: Duplication of the PLP gene was ruled out, and mutations were identified in noncoding regions of five patients in four families with PMD. In two brothers with a severe form of PMD, a G to T transversion at IVS6+3 was detected. This mutation resulted in skipping of exon 6 in the PLP mRNA of cultured fibroblasts. A patient who developed nystagmus at 16 months and progressive spastic ataxia at 18 months was found to have a 19-base pair (bp) deletion of a G-rich region near the 5' end of intron 3 of the PLP gene. A patient with a T to C transition at IVS3+2 and a patient with an A to G transition at IVS3+4 have the classic form of PMD. These, like the 19-bp deletion, are in intron 3, which is involved in PLP/DM20 alternative splice site selection. Conclusions: Mutations in introns of the PLP gene, even at positions that are not 100% conserved at splice sites, are an important cause of PMD.
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页码:1089 / 1096
页数:8
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