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首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >The effects of additional carbohydrate in the coiled-coil region of fibrinogen on polymerization and clot structure and properties: characterization of the homozygous and heterozygous forms of fibrinogen Lima (Aalpha Arg141-->Ser with extra glycosyla
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The effects of additional carbohydrate in the coiled-coil region of fibrinogen on polymerization and clot structure and properties: characterization of the homozygous and heterozygous forms of fibrinogen Lima (Aalpha Arg141-->Ser with extra glycosyla

机译:附加碳水化合物在纤维蛋白原卷材卷材区域中的影响和凝块结构及性质:纤维蛋白原利马酰胺纯合和杂合形式的表征(Aalpha arg141 - > Ser,具有额外的糖细胞

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    摘要

    Fibrinogen Lima is an abnormal fibrinogen with an Aalpha Arg141-->Ser substitution resulting in an extra N-glycosylation at Aalpha Asn139, which seems to be responsible for the impairment of fibrin polymerization. We have studied the polymerization and properties of clots made from both plasma and purified fibrinogen of both the homozygous and heterozygous forms. The clot permeation studies with both plasma and purified protein revealed a normal flux through the network for the heterozygous form but very decreased permeation in the homozygous form. Consistent with turbidity results, the clot network of the homozygous form, seen by scanning electron microscopy, was tight and composed of thin fibers, with many branch points, while the appearance of clots from the heterozygous form was similar to that of control clots, but in both cases the fibers were more curved than those of control clots. The rheological properties of clots from the homozygous form were also altered, with rigidity being increased in plasma clots, but decreased in the purified system, a consequence of the balance between numbers of branch points and fiber curvature. From these results it seems that the extra carbohydrate moiety, located in the alpha coiled-coil region close to the betaC domains, impairs the protofibril lateral association process, giving rise to thinner, more curved fibers, with the structural anomalies being most pronounced in the clots from the homozygous plasma. These studies support a model for fibrin polymerization in which the betaC-betaC interactions are involved in lateral aggregation.
    机译:纤维蛋白原利马是一种异常的纤维蛋白原,具有αAlphaarg141 - > Ser取代,导致在Aalpha Asn139的额外的N-糖基化,这似乎负责纤维蛋白聚合的损害。我们研究了由纯合并和杂合形式的血浆和纯化的纤维蛋白原制成的凝块的聚合和性质。具有血浆和纯化的蛋白质的凝块渗透研究显示通过网络的正常通量,用于杂合形式,但在纯合形式中渗透非常下降。通过浊度结果,通过扫描电子显微镜观察的杂种形式的凝块网络是紧密的,由薄纤维组成,具有许多分支点,而来自杂合形式的凝块的外观与控制凝块相似,但是在这两种情况下,纤维比对照凝块更弯曲。来自纯合形式的凝块的流变性质也被改变,刚性在血浆凝块中增加,但在纯化的系统中减少,其后果的分支点和纤维曲率之间的平衡。从这些结果来看,似乎额外的碳水化合物部分位于靠近βAC结构域的α卷绕线区域,损害了原生纤维横向关联过程,产生更薄,更弯曲的纤维,具有最明显的结构异常来自纯合子等离子体的凝块。这些研究支持纤维蛋白聚合模型,其中β-β相互作用涉及横向聚集。

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