Maekawa H, Yamazumi K, Muramatsu S, Kaneko M, Hirata H, Takahashi N, de Bosch N B, Carvajal Z, Ojeda A, Arocha-Piñango C L
Division of Hemostasis and Thrombosis Research, Jichi Medical School, Tochigi, Japan.
J Biol Chem. 1991 Jun 25;266(18):11575-81.
We have identified a unique N-glycosylated Asn substitution for a Ser at position 434 of the A alpha chain of an abnormal fibrinogen designated fibrinogen Caracas II. This dysfibrinogen was characterized by impaired fibrin monomer aggregation. Since there were 4 Thr residues immediately following the mutation, a new Asn-X-Thr/Ser-type consensus sequence, Asn-Thr-Thr arose for N-glycosylation of the Asn. The extra oligosaccharide was found to consist mainly of a disialylated biantennary structure comprising 81.9%, while a neutral and a monosialylated biantennary oligosaccharide represented only 3.6% and 14.5%, respectively. The mutation resides in the carboxyl-terminal region of the A alpha chain, which could fold back to form an extra small globular region located near the central region of the molecule (Erickson, H.P., and Fowler, W.E. (1983) Ann. N. Y. Acad. Sci. 408, 146-163; Weisel, H.P., Stauffacher, C.V., Bullitt, E., and Cohen, C. (1985) Science 230, 3124-3133). Therefore, the participation of this region, referred to as an additional central domain or an alpha domain, in fibrin gel formation is strongly implicated.
我们在一种名为纤维蛋白原加拉加斯II的异常纤维蛋白原的Aα链第434位的丝氨酸处鉴定出一个独特的N-糖基化天冬酰胺替代物。这种异常纤维蛋白原的特征是纤维蛋白单体聚集受损。由于突变后紧接着有4个苏氨酸残基,因此出现了一个新的天冬酰胺-X-苏氨酸/丝氨酸型共有序列,即天冬酰胺-苏氨酸-苏氨酸,用于天冬酰胺的N-糖基化。发现额外的寡糖主要由占81.9%的双唾液酸化双天线结构组成,而中性和单唾液酸化双天线寡糖分别仅占3.6%和14.5%。该突变位于Aα链的羧基末端区域,该区域可以折叠回形成位于分子中心区域附近的一个额外的小球形区域(埃里克森,H.P.,和福勒,W.E.(1983年)《纽约科学院学报》408,146 - 163;魏泽尔,H.P.,施陶法赫尔,C.V.,布利特,E.,和科恩,C.(1985年)《科学》230,3124 - 3133)。因此,强烈暗示该区域(称为额外的中心结构域或α结构域)参与纤维蛋白凝胶形成。