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犬丙酮酸激酶缺乏症的分子基础。

The molecular basis of canine pyruvate kinase deficiency.

作者信息

Whitney K M, Goodman S A, Bailey E M, Lothrop C D

机构信息

Scott-Ritchey Research Center, College of Veterinary Medicine, Auburn University, AL 36849.

出版信息

Exp Hematol. 1994 Aug;22(9):866-74.

PMID:7520391
Abstract

Inherited hemolytic anemia due to pyruvate kinase (PK) deficiency is an autosomal recessive disease of the Basenji dog that closely resembles human PK deficiency. Characterization of transcriptional and translational expression of PK isozymes and sequencing of DNA from normal and mutant dogs were performed to identify the genetic defect in Basenji dogs. Measurement of erythrocytic PK activity by ion exchange chromatography, substrate kinetics, immunologic reactivity, and electrophoretic mobility suggests that M2-type PK is the major form of PK activity in erythrocytes of PK-deficient dogs, in contrast to normal dogs having only R-type PK activity. Both R-type and M2-type PK mRNA are detectable in reticulocytes of PK-deficient dogs, suggesting that the aberrant isozyme expression is not due to a failure in the erythroid maturational switch from M2- to R-type isozymes. Nucleotide sequence data from wild-type and mutant R-type PK cDNA identified a single nucleotide deletion, delta C433, in the mutant cDNA. The deduced amino acid sequence predicts a truncated mutant protein devoid of all residues contributing to the catalytic site of the wild-type protein. In the absence of R-type PK activity, there is anomalous compensatory expression of M2-type PK in erythroid cells of PK-deficient Basenjis. The PK-deficient Basenji dog may be valuable in somatic cell gene therapy trials involving manipulation of hematopoietic stem cells.

摘要

由于丙酮酸激酶(PK)缺乏引起的遗传性溶血性贫血是巴辛吉犬的一种常染色体隐性疾病,与人类PK缺乏症极为相似。对PK同工酶的转录和翻译表达进行表征,并对正常犬和突变犬的DNA进行测序,以确定巴辛吉犬的基因缺陷。通过离子交换色谱法、底物动力学、免疫反应性和电泳迁移率来测量红细胞PK活性,结果表明,与仅具有R型PK活性的正常犬相比,M2型PK是PK缺乏犬红细胞中PK活性的主要形式。在PK缺乏犬的网织红细胞中可检测到R型和M2型PK mRNA,这表明异常的同工酶表达并非由于红细胞从M2型向R型同工酶成熟转换失败所致。野生型和突变型R型PK cDNA的核苷酸序列数据显示,突变型cDNA中有一个单核苷酸缺失,即δC433。推导的氨基酸序列预测,突变蛋白截短,缺失了所有构成野生型蛋白催化位点的残基。在缺乏R型PK活性的情况下,PK缺乏的巴辛吉犬红细胞中会出现M2型PK的异常代偿性表达。PK缺乏的巴辛吉犬在涉及造血干细胞操作的体细胞基因治疗试验中可能具有重要价值。

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