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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Molecular modeling predicts structural changes in the A subunit of factor XIII caused by two novel mutations identified in a neonate with severe congenital factor XIII deficiency
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Molecular modeling predicts structural changes in the A subunit of factor XIII caused by two novel mutations identified in a neonate with severe congenital factor XIII deficiency

机译:分子模型预测因严重先天性因子XIII缺乏症的新生儿中发现的两个新突变而导致的因子XIII A亚基的结构变化

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Introduction: Coagulation factor XIII (FXIII) is a fibrin-stabilizing factor, which contributes to hemostasis, wound healing, and maintenance of pregnancy. Accordingly, patients with congenital FXIII deficiency manifest a life-long bleeding tendency, abnormal wound healing and recurrent miscarriage. In order to understand the molecular mechanisms of congenital FXIII deficiency, genetic analysis and molecular modeling were carried out in a Japanese male neonate with severe FXIII deficiency. Methods and Results: Two novel mutations, Y204Stop (or Y204X, TAT to TAA) and S708R (AGC to AGG), were heterozygously identified by nucleotide sequencing analysis in exons V and XV of the gene for the A subunit of FXIII (FXIII-A). Y204X and S708R would lead to nonsense mediated mRNA decay and misfolding of the FXIII-A molecule, respectively. Using polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) analysis, the presence of these mutations was confirmed both together in the proband and one each separately in either the maternal or paternal sides of his family. In addition, moderately decreased FXIII activity was associated with the presence of either mutation. Molecular modeling predicted that the mutant molecule of S708R would be structurally compromised by the substitution of the Ser with the larger extended bulky and positively charged Arg side-chain. Conclusion: It is probable that the impaired tertiary structure of the mutant S708R molecule leads to its instability, which is at least in part responsible for the FXIII deficiency of this patient. This is consistent with the fact that the mutations and the reduced FXIII activities co-segregate among the patient's family members.
机译:简介:凝血因子XIII(FXIII)是一种纤维蛋白稳定因子,有助于止血,伤口愈合和维持妊娠。因此,先天性FXIII缺乏症患者表现出终生出血趋势,伤口愈合异常和反复流产。为了了解先天性FXIII缺乏症的分子机制,对患有严重FXIII缺乏症的日本男性新生儿进行了遗传分析和分子建模。方法与结果:通过核苷酸测序分析,在FXIII(FXIII-A)A基因的外显子V和XV中,通过核苷酸测序杂合鉴定了两个新的突变,Y204Stop(或Y204X,TAT到TAA)和S708R(AGC到AGG)。 )。 Y204X和S708R分别导致无意义的介导的mRNA降解和FXIII-A分子的错误折叠。使用聚合酶链反应-限制性片段长度多态性(PCR-RFLP)分析,在先证者中一起确认了这些突变的存在,在其家庭的父亲或父亲一方中分别确认了一个。另外,FXIII活性的适度降低与任一突变的存在有关。分子建模预测,S708R的突变分子将被较大的延伸的笨重且带正电的Arg侧链取代Ser所致。结论:突变的S708R分子的三级结构受损可能导致其不稳定,至少部分原因是该患者的FXIII缺乏。这与突变和减少的FXIII活性在患者的家庭成员中共同隔离的事实是一致的。

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