Honda S, Tomiyama Y, Shiraga M, Tadokoro S, Takamatsu J, Saito H, Kurata Y, Matsuzawa Y
The Second Department of Internal Medicine, Osaka University Medical School, Suita 565-0871, Japan.
J Clin Invest. 1998 Sep 15;102(6):1183-92. doi: 10.1172/JCI3206.
The ligand binding site(s) of the alpha subunit of integrin alphaIIb beta3 (GPIIb-IIIa), a prototypic non-I domain integrin, remains elusive. In this study, we have characterized a Japanese variant of Glanzmann thrombasthenia, KO, whose platelets express normal amounts of alphaIIb beta3. KO platelets failed to bind the activation-independent ligand-mimetic mAb OP-G2 and did not bind fibrinogen or the activation-dependent ligand-mimetic mAb PAC-1 following activation of alphaIIb beta3 under any condition examined. Sequence analysis of PCR fragments derived from KO platelet mRNA revealed a 6-bp insertion leading to a 2-amino-acid insertion (Arg-Thr) between residues 160 and 161 of the alphaIIb subunit. Introduction of the insertion into wild-type recombinant alphaIIb beta3 expressed in 293 cells led to the normal expression of alphaIIb beta3 having the defect in ligand binding function. The insertion is located within the small loop (Cys146-Cys167) in the third NH2-terminal repeat of the alphaIIb subunit. Alanine substitution of each of the oxygenated residues within the loop (Thr150, Ser152, Glu157, Asp159, Ser161, and Asp163) did not significantly affect expression of alphaIIbbeta3, and only Asp163AlaalphaIIb beta3 abolished the ligand binding function. In addition, Asp163AlaalphaIIb beta3 as well as KO mutant alphaIIb beta3 constitutively expressed the PMI-1 epitope. Our present data suggest that Asp163 of the alphaIIb subunit is one of the critical residues for ligand binding.
整合素αIIbβ3(糖蛋白IIb-IIIa)是一种典型的非I结构域整合素,其α亚基的配体结合位点仍不清楚。在本研究中,我们对一种日本型Glanzmann血小板无力症变体KO进行了特征分析,其血小板表达正常量的αIIbβ3。KO血小板不能结合非活化依赖性配体模拟单克隆抗体OP-G2,并且在任何检测条件下,αIIbβ3活化后都不能结合纤维蛋白原或活化依赖性配体模拟单克隆抗体PAC-1。对来自KO血小板mRNA的PCR片段进行序列分析,发现一个6碱基插入,导致αIIb亚基第160和161位残基之间插入2个氨基酸(精氨酸-苏氨酸)。将该插入引入在293细胞中表达的野生型重组αIIbβ3,导致具有配体结合功能缺陷的αIIbβ3正常表达。该插入位于αIIb亚基第三个NH2末端重复序列的小环(Cys146-Cys167)内。环内每个氧化残基(Thr150、Ser152、Glu157、Asp159、Ser161和Asp163)的丙氨酸取代对αIIbβ3的表达没有显著影响,只有Asp163AlaαIIbβ3消除了配体结合功能。此外,Asp163AlaαIIbβ3以及KO突变体αIIbβ3组成性表达PMI-1表位。我们目前的数据表明,αIIb亚基的Asp163是配体结合的关键残基之一。