Department of Plasma Proteins, Sanquin-AMC Landsteiner Laboratory, Amsterdam, The Netherlands.
Blood. 2010 Feb 25;115(8):1640-9. doi: 10.1182/blood-2009-06-229203. Epub 2009 Dec 23.
In the majority of patients with acquired thrombotic thrombocytopenic purpura (TTP), antibodies are directed toward the spacer domain of ADAMTS13. We have previously shown that region Y658-Y665 is involved. We now show that replacement of R660, Y661, or Y665 with alanine in ADAMTS13 reduced/abolished the binding of 2 previously isolated human monoclonal antibodies and polyclonal antibodies derived from plasma of 6 patients with acquired TTP. We investigated whether these residues also influenced cleavage of short von Willebrand factor (VWF) fragment substrate VWF115. An ADAMTS13 variant (R660A/Y661A/Y665A, ADAMTS13-RYY) showed a 12-fold reduced catalytic efficiency (k(cat)/K(m)) arising from greatly reduced (> 25-fold) binding, demonstrated by surface plasmon resonance. The influence of these residue changes on full-length VWF was determined with denaturing and flow assays. ADAMTS13-RYY had reduced activity in both, with proteolysis of VWF unaffected by autoantibody. Binding of ADAMTS13-RYY mutant to VWF was, however, similar to normal. Our results demonstrate that residues within Y658-Y665 of the ADAMTS13 spacer domain that are targeted by autoantibodies in TTP directly interact with a complementary exosite (E1660-R1668) within the VWF A2 domain. Residues R660, Y661, and Y665 are critical for proteolysis of short VWF substrates, but wider domain interactions also make important contributions to cleavage of full-length VWF.
在大多数获得性血栓性血小板减少性紫癜(TTP)患者中,抗体针对 ADAMTS13 的间隔区。我们之前已经表明,区域 Y658-Y665 参与其中。我们现在表明,ADAMTS13 中的 R660、Y661 或 Y665 被丙氨酸取代会降低/消除 2 种先前分离的人类单克隆抗体和来自 6 例获得性 TTP 患者血浆的多克隆抗体的结合。我们研究了这些残基是否也影响短 von Willebrand 因子(VWF)片段底物 VWF115 的切割。ADAMTS13 变体(R660A/Y661A/Y665A,ADAMTS13-RYY)显示出 12 倍降低的催化效率(k(cat)/K(m)),这是由于表面等离子体共振显示出结合大大降低(>25 倍)。通过变性和流动测定确定这些残基变化对全长 VWF 的影响。ADAMTS13-RYY 在两者中的活性均降低,自身抗体对 VWF 的蛋白水解作用不受影响。然而,ADAMTS13-RYY 突变体与 VWF 的结合类似于正常。我们的结果表明,TTP 中自身抗体针对的 ADAMTS13 间隔区的 Y658-Y665 内的残基直接与 VWF A2 结构域内的互补外位(E1660-R1668)相互作用。残基 R660、Y661 和 Y665 对于短 VWF 底物的蛋白水解至关重要,但更广泛的结构域相互作用也对全长 VWF 的切割做出重要贡献。