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小鼠淡耳(ep)与人类赫尔曼斯基-普德拉克综合征同源,且含有一个罕见的“AT-AC”内含子。

Mouse pale ear (ep) is homologous to human Hermansky-Pudlak syndrome and contains a rare 'AT-AC' intron.

作者信息

Feng G H, Bailin T, Oh J, Spritz R A

机构信息

Department of Medical Genetics, University of Wisconsin, Madison 53706, USA.

出版信息

Hum Mol Genet. 1997 May;6(5):793-7. doi: 10.1093/hmg/6.5.793.

Abstract

Hermansky-Pudlak syndrome (HPS) is a rare, often fatal, autosomal recessive disorder in which albinism, bleeding and lysosomal storage are associated with defects of diverse cytoplasmic organelles, including melanosomes, platelet dense granules and lysosomes. Similar multi-organellar defects occur in the Chediak-Higashi syndrome (CHS), as well as in a large number of different mouse mutants. The HPS gene is located in 10q23, and two genetically distinct mouse loci, pale ear (ep) and ruby-eye (ru), both with mutant phenotypes similar to human HPS, map close together in the homologous region of murine chromosome 19, suggesting that one of these loci might be homologous to human HPS. We recently identified the human HPS gene, which encodes a novel ubiquitously-expressed transmembrane protein of unknown function. Here, we describe characterization of the mouse Hps cDNA and genomic locus, and identification of pathologic Hps gene mutations in ep but not in ru mice, establishing mouse pale ear as an animal model for human HPS. The phenotype of homozygous ep mutant mice encompasses those of both HPS and CHS, suggesting that these disorders may be closely related. In addition, the mouse and human HPS genes both contain a rare 'AT-AC' intron, and comparison of the sequences of this intron in the mouse and human genes identified conserved sequences that suggest a possible role for pre-mRNA secondary structure in excision of this rare class of introns.

摘要

Hermansky-Pudlak综合征(HPS)是一种罕见的、常致命的常染色体隐性疾病,其白化病、出血和溶酶体贮积与多种细胞质细胞器的缺陷相关,这些细胞器包括黑素小体、血小板致密颗粒和溶酶体。类似的多细胞器缺陷也出现在Chediak-Higashi综合征(CHS)以及大量不同的小鼠突变体中。HPS基因位于10q23,两个遗传上不同的小鼠基因座,淡耳(ep)和红宝石眼(ru),其突变表型均与人类HPS相似,在小鼠19号染色体的同源区域紧密连锁,提示其中一个基因座可能与人类HPS同源。我们最近鉴定出了人类HPS基因,它编码一种功能未知、广泛表达的新型跨膜蛋白。在此,我们描述了小鼠Hps cDNA和基因组位点的特征,以及在ep小鼠而非ru小鼠中鉴定出病理性Hps基因突变,从而确立了小鼠淡耳作为人类HPS的动物模型。纯合ep突变小鼠的表型涵盖了HPS和CHS两者的表型,提示这些疾病可能密切相关。此外,小鼠和人类HPS基因均含有一个罕见的“AT-AC”内含子,对该内含子在小鼠和人类基因中的序列比较鉴定出了保守序列,提示前体mRNA二级结构在这类罕见内含子的剪接中可能发挥作用。

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