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一名患有变异型Glanzmann血小板无力症患者的αIIbβ3整合素β3亚基中出现了一种新的196位亮氨酸到脯氨酸的替换。

A novel 196Leu to Pro substitution in the beta3 subunit of the alphaIIbbeta3 integrin in a patient with a variant form of Glanzmann thrombasthenia.

作者信息

Nurden Alan T, Ruan Jian, Pasquet Jean-Max, Gauthier Bruno, Combrié Robert, Kunicki Thomas, Nurden Paquita

机构信息

UMR 5533 CNRS, Hôpital Cardiologique, 33604 Pessac, France.

出版信息

Platelets. 2002 Mar;13(2):101-11. doi: 10.1080/09537100220122466.

Abstract

Glanzmann thrombasthenia (GT) is an inherited disorder where an absence of platelet aggregation is associated with quantitative or qualitative abnormalities of the alphaIIbbeta3 integrin. In rare patients, amino acid substitutions have provided information on the functional significance of specific domains within alphaIIb or beta3. We now report an elderly male GT patient (R.M.) from the south west of France whose platelets possess a small residual expression of alphaIIbbeta3. Furthermore, the integrin failed to undergo the necessary conformational changes following platelet activation to permit the binding of fibrinogen or activation-dependent monoclonal antibodies despite the presence of an RGD-binding site. Screening of the alphaIIb and beta3 genes by PCR-SSCP revealed a heterozygous mutation at position 685 in exon 5 of the beta3 gene leading to a 196Leu to Pro substitution. 196Leu is a highly conserved amino acid of beta3. The other beta3 allele appeared to be silent. This mutation, inherited from his mother and present in other family members with intermediate levels of alphaIIbbeta3, was close to the MIDAS-like domain of beta3, a fact that appears to explain its effect on alphaIIbbeta3 activation and fibrinogen binding.

摘要

血小板无力症(GT)是一种遗传性疾病,血小板聚集缺乏与αIIbβ3整合素的数量或质量异常有关。在少数患者中,氨基酸替代为αIIb或β3内特定结构域的功能意义提供了信息。我们现在报告一名来自法国西南部的老年男性GT患者(R.M.),其血小板具有少量残余的αIIbβ3表达。此外,尽管存在RGD结合位点,但在血小板激活后,整合素未能发生必要的构象变化以允许纤维蛋白原结合或激活依赖性单克隆抗体结合。通过PCR-SSCP对αIIb和β3基因进行筛查,发现在β3基因第5外显子的685位存在杂合突变,导致196位亮氨酸被脯氨酸替代。196位亮氨酸是β3的一个高度保守的氨基酸。另一个β3等位基因似乎是沉默的。这个从他母亲遗传而来并存在于其他具有中等水平αIIbβ3的家庭成员中的突变,靠近β3的类MIDAS结构域,这一事实似乎解释了其对αIIbβ3激活和纤维蛋白原结合的影响。

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