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Expanding the Mutation Spectrum Affecting alpha IIb beta 3 Integrin in Glanzmann Thrombasthenia: Screening of the ITGA2B and ITGB3 Genes in a Large International Cohort

机译:扩大影响Glanzmann血小板减少症中αIIb beta 3整合素的突变谱:在大型国际研究中筛选ITGA2B和ITGB3基因

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We report the largest international study on Glanzmann thrombasthenia (GT), an inherited bleeding disorder where defects of the ITGA2B and ITGB3 genes cause quantitative or qualitative defects of the IIb3 integrin, a key mediator of platelet aggregation. Sequencing of the coding regions and splice sites of both genes in members of 76 affected families identified 78 genetic variants (55 novel) suspected to cause GT. Four large deletions or duplications were found by quantitative real-time PCR. Families with mutations in either gene were indistinguishable in terms of bleeding severity that varied even among siblings. Families were grouped into type I and the rarer type II or variant forms with residual IIb3 expression. Variant forms helped identify genes encoding proteins mediating integrin activation. Splicing defects and stop codons were common for both ITGA2B and ITGB3 and essentially led to a reduced or absent IIb3 expression; included was a heterozygous c.1440-13_c.1440-1del in intron 14 of ITGA2B causing exon skipping in seven unrelated families. Molecular modeling revealed how many missense mutations induced subtle changes in IIb and 3 domain structure across both subunits, thereby interfering with integrin maturation and/or function. Our study extends knowledge of GT and the pathophysiology of an integrin.
机译:我们报道了关于遗传性出血性疾病格兰茨曼血栓症(GT)的最大的国际研究,其中ITGA2B和ITGB3基因的缺陷导致IIb3整联蛋白(血小板聚集的关键介质)的定量或定性缺陷。在76个受影响家庭的成员中,对这两个基因的编码区和剪接位点进行了测序,确定了78个可能导致GT的遗传变异(55个新颖)。通过定量实时PCR发现了四个大的缺失或重复。就出血严重程度而言,即使在同胞之间也有差异,在这两个基因中都具有突变的家庭是无法区分的。将家族分为I型和IIb3型残留的罕见II型或变异形式。变体形式有助于鉴定编码介导整联蛋白激活的蛋白质的基因。剪接缺陷和终止密码子对于ITGA2B和ITGB3都是常见的,并且本质上导致IIb3表达减少或缺失。其中包括ITGA2B内含子14中杂合的c.1440-13_c.1440-1del,导致七个无关家族中的外显子跳跃。分子模型揭示了多少个错义突变在两个亚基中引起IIb和3结构域结构的细微变化,从而干扰整联蛋白的成熟和/或功能。我们的研究扩展了GT知识和整联蛋白的病理生理学。

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