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糖原分支酶(GBE1)突变导致马的糖原贮积病IV型。

Glycogen branching enzyme (GBE1) mutation causing equine glycogen storage disease IV.

作者信息

Ward Tara L, Valberg Stephanie J, Adelson David L, Abbey Colette A, Binns Matthew M, Mickelson James R

机构信息

Department of Veterinary PathoBiology, College of Veterinary Medicine, University of Minnesota, 295 AS/VM, 1988 Fitch Ave., St. Paul, Minnesota 55108-6009, USA.

出版信息

Mamm Genome. 2004 Jul;15(7):570-7. doi: 10.1007/s00335-004-2369-1.

DOI:10.1007/s00335-004-2369-1
PMID:15366377
Abstract

Comparative biochemical and histopathological evidence suggests that a deficiency in the glycogen branching enzyme, encoded by the GBE1 gene, is responsible for a recently identified recessive fatal fetal and neonatal glycogen storage disease (GSD) in American Quarter Horses termed GSD IV. We have now derived the complete GBE1 cDNA sequences for control horses and affected foals, and identified a C to A substitution at base 102 that results in a tyrosine (Y) to stop (X) mutation in codon 34 of exon 1. All 11 affected foals were homozygous for the X34 allele, their 11 available dams and sires were heterozygous, and all 16 control horses were homozygous for the Y34 allele. The previous findings of poorly branched glycogen, abnormal polysaccharide accumulation, lack of measurable GBE1 enzyme activity and immunodetectable GBE1 protein, coupled with the present observation of abundant GBE1 mRNA in affected foals, are all consistent with the nonsense mutation in the 699 amino acid GBE1 protein. The affected foal pedigrees have a common ancestor and contain prolific stallions that are likely carriers of the recessive X34 allele. Defining the molecular basis of equine GSD IV will allow for accurate DNA testing and the ability to prevent occurrence of this devastating disease affecting American Quarter Horses and related breeds.

摘要

比较生物化学和组织病理学证据表明,由GBE1基因编码的糖原分支酶缺乏是导致美国夸特马中最近发现的一种隐性致命性胎儿和新生儿糖原贮积病(GSD)(称为GSD IV型)的原因。我们现已获得对照马和患病马驹的完整GBE1 cDNA序列,并在第102位碱基处鉴定出一个从C到A的替换,该替换导致外显子1的第34密码子中的酪氨酸(Y)突变为终止密码子(X)。所有11匹患病马驹均为X34等位基因纯合子,它们的11匹可用母马和种公马为杂合子,所有16匹对照马均为Y34等位基因纯合子。先前关于糖原分支不良、异常多糖积累、缺乏可测量的GBE1酶活性和免疫可检测的GBE1蛋白的发现,再加上目前在患病马驹中观察到丰富的GBE1 mRNA,均与699个氨基酸的GBE1蛋白中的无义突变一致。患病马驹的谱系有一个共同祖先,并且包含可能是隐性X34等位基因携带者的多产种马。确定马GSD IV型的分子基础将有助于进行准确的DNA检测,并能够预防这种影响美国夸特马及相关品种的毁灭性疾病的发生。

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2
Familial cirrhosis of the liver with storage of abnormal glycogen.伴有异常糖原储存的家族性肝硬化
Lab Invest. 1956 Jan-Feb;5(1):11-20.
3
Animal models for skin blistering conditions: absence of laminin 5 causes hereditary junctional mechanobullous disease in the Belgian horse.皮肤水疱性疾病的动物模型:层粘连蛋白5缺失导致比利时马遗传性交界性机械性大疱性疾病。
J Inherit Metab Dis. 2024 Jan;47(1):93-118. doi: 10.1002/jimd.12654. Epub 2023 Jul 27.
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Genomic diversity and relationship analyses of endangered German Black Pied cattle (DSN) to 68 other taurine breeds based on whole-genome sequencing.基于全基因组测序的濒危德国黑 pied 牛(DSN)与其他 68 个牛品种的基因组多样性及亲缘关系分析。
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J Clin Invest. 1996 Feb 15;97(4):941-8. doi: 10.1172/JCI118517.