β3细胞质区域的非激活ITGB3突变导致α ib β3/RhoA通路受损的巨血小板减少症

Keiichi Nakata , Keigo Akuta , Takaya Endo , Midori Koike , Daisuke Motooka , Daisuke Okuzaki , Hisashi Kato , Yoshiaki Tomiyama , Naoki Hosen , Hirokazu Kashiwagi
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引用次数: 0

摘要

在先天性巨血小板减少症中发现的ITGA2B或ITGB3突变几乎都能诱导α ib β3的组成性激活。然而,伴随α ib β3活化是否对大量血小板减少症的发生至关重要尚不清楚。最近,我们在一名巨血小板减少症患者中发现了β3(R760C)突变,该突变不会诱导α ib β3活化。家族研究显示,伴有α ib β3和糖蛋白IV (GPVI)表达降低的巨血小板减少症似乎与β3(R760C)杂合相关。我们培育了β3(R760C)敲入蛋白(KI)小鼠,并研究了该突变对血小板/巨核生物的影响。与野生型小鼠相比,杂合子(Hetero)和纯合子(Homo) KI小鼠的血小板减少率分别降至76%和40%。KI小鼠血小板αIIbβ3和GPVI表达降低,未刺激KI小鼠血小板未检测到αIIbβ3活化。因此,异源KI小鼠复制了人类参与者的表型,表明β3(R760C)突变是导致巨血小板减少症的原因。KI小鼠的血小板聚集、激动剂诱导的JON/A结合和p -选择素表达受损。在5 ' -二磷酸腺苷或凝血酶刺激下,人属小鼠的血小板在纤维蛋白原上的扩散也受到损害。人属小鼠纤维蛋白原黏附的巨核细胞丝状足和板足形成受损,RhoA激活显著受损。人属小鼠原血小板形成受损,形态异常。此外,人属小鼠血小板寿命缩短。这些数据表明,β3(R760C)突变损害了α ib β3的内向外和外向内信号通路,异常的肌动蛋白重排和RhoA激活受损可能在巨血小板减少症中起主要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A nonactivating ITGB3 mutation in the β3 cytoplasmic region causes macrothrombocytopenia with an impaired αIIbβ3/RhoA pathway

Abstract

Almost all mutations of ITGA2B or ITGB3 identified in congenital macrothrombocytopenia induce constitutive activation of αIIbβ3. However, whether concomitant αIIbβ3 activation is essential for macrothrombocytopenia development remains unknown. Recently, we identified the β3(R760C) mutation that does not induce αIIbβ3 activation in a patient with macrothrombocytopenia. The family study showed that macrothrombocytopenia with reduced expression of αIIbβ3 and glycoprotein IV (GPVI) appeared to be associated with patients heterozygous for β3(R760C). We generated β3(R760C) knockin (KI) mice and investigated the effects of the mutation on platelet/megakaryote biology. Macrothrombocytopenia was decreased to 76% and 40% of platelet counts in heterozygous (Hetero) and homozygous (Homo) KI mice, respectively, when compared with the wild-type mice. Platelet αIIbβ3 and GPVI expression were decreased in KI mice, and αIIbβ3 activation was not detected in nonstimulated KI platelets. Thus, the hetero KI mice reproduced the phenotype of the human participant, indicating that the β3(R760C) mutation is responsible for the macrothrombocytopenia. Platelet aggregation, agonist-induced JON/A binding, and P-selectin expression were impaired in KI mice. Platelet spreading on fibrinogen was also impaired in Homo mice with adenosine 5′-diphosphate or thrombin stimulation. Filopodia and lamellipodia formation was impaired in fibrinogen-adhered megakaryocytes of Homo mice with significantly impaired RhoA activation. Proplatelet formation in Homo mice was impaired with abnormal morphology. In addition, platelet life span was shortened in Homo mice. These data indicate that the β3(R760C) mutation impairs the inside-out and outside-in signaling of αIIbβ3, and abnormal actin rearrangement and impaired RhoA activation may play major roles in macrothrombocytopenia.
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