Fitches A C, Lewandowski K, Olds R J
Department of Pathology, Dunedin School of Medicine, University of Otago, New Zealand.
Thromb Haemost. 2001 Oct;86(4):1023-7.
We report the identification of a new mutation resulting in type I antithrombin (AT) deficiency and the mechanism by which the deficiency arose. The single base substitution of G to A at nucleotide 2709 was identified in a proband with a family history of venous thrombosis. The mutation results in a substitution of 82 Ser by Asn, creating a new glycosylation site. Expression studies were then carried out, to confirm Asn-linked glycosylation occurred at this consensus site and that this resulted in the AT deficient phenotype. Cell-free translations using rabbit reticulocyte lysate in the presence of microsomes demonstrated that the 82 Asn variant was post-translationally processed efficiently. The 82 Asn variant protein was of a higher molecular weight than normal AT. consistent with the addition of a fifth glycan chain. Incubation of translation product with endoglycosidase H, confirmed that the higher molecular weight product had resulted from additional carbohydrate. Expression of the 82 Asn variant in COS-7 cells resulted in intracellular accumulation, with a low level of secretion of the protein into culture supernatant, consistent with type I AT deficiency. The addition of an extra carbohydrate side chain to residue 82 of antithrombin may block post-translational folding. trapping the variant intracellulary.
我们报告了一种导致I型抗凝血酶(AT)缺乏的新突变的鉴定结果以及该缺乏症产生的机制。在一名有静脉血栓形成家族史的先证者中,鉴定出核苷酸2709处的G到A的单碱基替换。该突变导致82位丝氨酸被天冬酰胺取代,产生了一个新的糖基化位点。随后进行了表达研究,以确认在这个共有位点发生了天冬酰胺连接的糖基化,并且这导致了AT缺乏表型。在微粒体存在的情况下,使用兔网织红细胞裂解物进行无细胞翻译表明,82位天冬酰胺变体在翻译后被有效加工。82位天冬酰胺变体蛋白的分子量高于正常AT,这与添加了第五条聚糖链一致。将翻译产物与内切糖苷酶H一起孵育,证实较高分子量的产物是由额外的碳水化合物导致的。82位天冬酰胺变体在COS-7细胞中的表达导致细胞内积累,蛋白质分泌到培养上清液中的水平较低,这与I型AT缺乏一致。在抗凝血酶的82位残基上添加额外的碳水化合物侧链可能会阻断翻译后折叠,将变体截留在细胞内。