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血型B-糖基转移酶无序环中的氨基酸取代导致弱B血型表型。

Amino-acid substitution in the disordered loop of blood group B-glycosyltransferase enzyme causes weak B phenotype.

作者信息

Yazer Mark H, Denomme Greg A, Rose Natisha L, Palcic Monica M

机构信息

Institute for Transfusion Medicine and Department of Pathology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

Transfusion. 2005 Jul;45(7):1178-82. doi: 10.1111/j.1537-2995.2005.00170.x.

Abstract

BACKGROUND

Few studies have investigated the reaction kinetics and interactions with nucleotide donor and acceptor substrates of mutant human ABO glycosyltransferases. Previous work identified a B(w) allele featuring a 556G>A polymorphism giving rise to a weak B phenotype. This polymorphism is predicted to cause a M186V amino-acid mutation within a highly conserved series of 16 amino acids present both in both blood group A- and blood group B-synthesizing enzymes. These residues are known as the disordered loop because their location cannot be determined in the crystal structure of the enzyme. Another patient has been identified with a 556G>A B(w) allele and the kinetics of the resulting mutant glycosyltransferase were studied.

STUDY DESIGN AND METHODS

Serologic testing with murine and human reagents, amplification of the coding regions of exons 6 and 7, and DNA sequencing were performed with standard protocols. Enzyme kinetic studies utilized a model of human GTB M186V expressed in Escherichia coli with radiolabeled UDP-galactose and UDP-N-acetylgalactosamine as donor substrates and synthetic H-disaccharide as acceptor following standard protocols.

RESULTS

The patient's red blood cells demonstrated a weak, but not mixed-field, B phenotype. Kinetic studies on the mutant enzyme revealed diminished activity (k(cat) = 0.15 per sec with UDP-galactose compared to 5.1 per sec for wild-type GTB) and elevated K(m) values for all substrates.

CONCLUSION

This enzyme with a mutation in the disordered loop produces weak B antigen expression because of greatly decreased enzyme activity and reduced affinity for B-donor and acceptor substances.

摘要

背景

很少有研究调查突变型人ABO糖基转移酶与核苷酸供体和受体底物的反应动力学及相互作用。先前的研究发现了一个B(w)等位基因,其具有556G>A多态性,导致弱B血型表型。据预测,这种多态性会在血型A和血型B合成酶中都存在的16个氨基酸的高度保守序列内引起M186V氨基酸突变。这些残基被称为无序环,因为它们在酶的晶体结构中位置无法确定。已鉴定出另一名患者具有556G>A B(w)等位基因,并对由此产生的突变型糖基转移酶的动力学进行了研究。

研究设计与方法

采用标准方案,用鼠类和人类试剂进行血清学检测、扩增外显子6和7的编码区并进行DNA测序。酶动力学研究采用在大肠杆菌中表达的人GTB M186V模型,以放射性标记的UDP-半乳糖和UDP-N-乙酰半乳糖胺作为供体底物,以合成的H-二糖作为受体,遵循标准方案。

结果

患者的红细胞表现出弱B血型表型,但不是混合视野表型。对突变酶的动力学研究显示活性降低(与野生型GTB的5.1每秒相比,UDP-半乳糖的k(cat)为0.15每秒),且所有底物的K(m)值升高。

结论

这种在无序环中发生突变的酶由于酶活性大幅降低以及对B供体和受体物质的亲和力降低,导致弱B抗原表达。

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