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日本软骨毛发发育不全患者中新型RMRP突变和特定奠基者单倍型的鉴定。

Identification of novel RMRP mutations and specific founder haplotypes in Japanese patients with cartilage-hair hypoplasia.

作者信息

Hirose Yuichiro, Nakashima Eiji, Ohashi Hirofumi, Mochizuki Hiroshi, Bando Yuki, Ogata Tsutomu, Adachi Masanori, Toba Emi, Nishimura Gen, Ikegawa Shiro

机构信息

Laboratory for Bone and Joint Diseases, SNP Research Center, RIKEN, 4-6-1 Shirokanedai, Minato-ku, Tokyo, 108-8639, Japan.

Division of Medical Genetics, Saitama Children's Medical Center, Iwatsuki, Japan.

出版信息

J Hum Genet. 2006;51(8):706-710. doi: 10.1007/s10038-006-0015-3. Epub 2006 Jul 11.

Abstract

Cartilage-hair hypoplasia (CHH), or metaphyseal dysplasia, McKusick type, is an autosomal recessive disease with diverse clinical manifestations. CHH is caused by mutations in RMRP (ribonuclease mitochondrial RNA processing), the gene encoding the RNA component of the ribonucleoprotein complex RNase MRP. A common founder mutation, 70A>G has been reported in the Finnish and Amish populations. We screened 11 Japanese patients with CHH for RMRP mutations and identified mutations in five probands, including three novel mutations (16-bp dup at +1, 168G>A, and 217C>T). All patients were compound heterozygotes for an insertion or duplication in the promoter or 5'-transcribed regions and a point mutation in the transcribed region. Two recurrent mutations were unique to the Japanese population: a 17-bp duplication at +3 and 218A>G. Haplotype analysis revealed that the two mutations common in Japanese individuals were contained within distinct haplotypes. Through this analysis, we have identified a unique mutation spectrum and founder mutations in the Japanese population.

摘要

软骨毛发发育不全(CHH),或干骺端发育异常,麦库西克型,是一种具有多种临床表现的常染色体隐性疾病。CHH由RMRP(核糖核酸酶线粒体RNA加工)基因突变引起,该基因编码核糖核蛋白复合物RNase MRP的RNA成分。在芬兰和阿米什人群中报道了一种常见的奠基者突变,即70A>G。我们对11例日本CHH患者进行了RMRP突变筛查,在5名先证者中鉴定出突变,包括3种新突变(+1处16 bp重复、168G>A和217C>T)。所有患者均为启动子或5'转录区域插入或重复以及转录区域点突变的复合杂合子。两种复发性突变是日本人群特有的:+3处17 bp重复和218A>G。单倍型分析显示,日本个体中常见的两种突变包含在不同的单倍型中。通过这项分析,我们在日本人群中鉴定出了独特的突变谱和奠基者突变。

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