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由具有异常后果的点突变导致的犬类血友病B。

Canine hemophilia B resulting from a point mutation with unusual consequences.

作者信息

Evans J P, Brinkhous K M, Brayer G D, Reisner H M, High K A

机构信息

Department of Medicine, University of North Carolina, Chapel Hill 27599.

出版信息

Proc Natl Acad Sci U S A. 1989 Dec;86(24):10095-9. doi: 10.1073/pnas.86.24.10095.

Abstract

We have used the polymerase chain reaction to amplify the entire coding region of canine factor IX from a hemophilia B animal. When the sequence was compared to that which codes for normal canine factor IX, a single missense mutation was identified. This mutation (G----A at nucleotide 1477) results in the substitution of glutamic acid for glycine-379 in the catalytic domain of the molecule. The mutation creates a new restriction site that allowed confirmation of the abnormal sequence in both hemophilic and carrier animals. Amino acid 379 in canine factor IX corresponds to position 381 in human factor IX, a location at which no human mutations have been described. Moreover, it occurs at one of the few amino acids that have been rigorously conserved among the trypsin-like serine proteases throughout evolution. The mutation responsible for canine hemophilia B results in a complete lack of circulating factor IX in the affected animals. As it is unusual for a missense mutation to result in a complete absence of protein product, structural modeling of the mutant and normal proteins was pursued. These studies suggest that the observed mutation would have major adverse effects on the tertiary structure of the aberrant factor IX molecule. The elucidation of this mutation sheds light on structure-function relationships in factor IX and should facilitate future experiments directed toward gene therapy of this disease.

摘要

我们利用聚合酶链反应从一只患B型血友病的动物中扩增出犬因子IX的整个编码区。当将该序列与正常犬因子IX的编码序列进行比较时,发现了一个单错义突变。这个突变(核苷酸1477处的G→A)导致分子催化结构域中第379位甘氨酸被谷氨酸取代。该突变产生了一个新的限制性酶切位点,可用于确认血友病动物和携带该突变的动物中的异常序列。犬因子IX中的第379位氨基酸对应于人类因子IX中的第381位,在人类中尚未描述该位置有突变。此外,它发生在整个进化过程中在类胰蛋白酶丝氨酸蛋白酶中严格保守的少数氨基酸之一处。导致犬B型血友病的突变导致受影响动物中完全缺乏循环中的因子IX。由于错义突变导致蛋白质产物完全缺失的情况并不常见,因此对突变型和正常型蛋白质进行了结构建模。这些研究表明,观察到的突变会对异常因子IX分子的三级结构产生重大不利影响。对该突变的阐明揭示了因子IX的结构-功能关系,并应有助于未来针对该疾病基因治疗的实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1268/298651/1eb557bbeb92/pnas00291-0470-a.jpg

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