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首页> 外文期刊>Mammalian genome: official journal of the International Mammalian Genome Society >The bovine #alpha#-glucosidase gene: coding region, genomic structure, and mutations that cause bovine generalized glycogenosis
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The bovine #alpha#-glucosidase gene: coding region, genomic structure, and mutations that cause bovine generalized glycogenosis

机译:牛#alpha#-葡萄糖苷酶基因:编码区,基因组结构和引起牛广义糖原症的突变

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摘要

We report here cDNA and genomic sequence of the bovine acidic #alpha#-glucosidase gene, from the initiation codon to the most 3' polyadenylation signal. The 2814-bp coding sequence predicts a 937-amino acid protein, which is highly conserved compared with the human #alpha#-glucosidase gene (86% and 83% identity respectively). The intron/exon boundaries are also conserved between the two species. Two mutations have been identified in Brahmans, and one in Shorthorns, that lead to generalized glycogenosis. All three mutations result in premature termination of translation. Evidence is also presented for a missense mutation segregating with the Brahman population, which is responsible for a 70-80% reduction in #alpha#-glucosidase activity.
机译:我们在这里报告了牛酸性#alpha#-葡萄糖苷酶基因的cDNA和基因组序列,从起始密码子到最3'的聚腺苷酸化信号。 2814 bp编码序列可预测937个氨基酸的蛋白质,与人#alpha#-葡萄糖苷酶基因相比,保守性很高(分别为86%和83%相同)。内含子/外显子的边界在两个物种之间也是保守的。在婆罗门(Brahmans)中已鉴定出两种突变,而在短角牛(Shorthorns)中则鉴定出一种突变,导致普遍的糖原异生。所有这三个突变导致翻译的过早终止。还提供了与婆罗门人群隔离的错义突变的证据,该突变导致#α#-葡萄糖苷酶活性降低70-80%。

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