Wilczynska Malgorzata, Lobov Sergei, Ny Tor
Department of Medical Biochemistry and Biophysics, Umeå University, Sweden.
FEBS Lett. 2003 Feb 27;537(1-3):11-6. doi: 10.1016/s0014-5793(03)00057-7.
The wild-type form of plasminogen activator inhibitor type-2 (PAI-2) and the pathogenic Z-mutant of alpha(1)-antitrypsin (alpha(1)AT) are serpins that spontaneously polymerize by the loop-sheet mechanism. Compared to the consensus serpin sequence, both PAI-2 and Z-alpha(1)AT have deviations in the so-called breach region located at the top of the A beta-sheet. In the case of Z-alpha(1)AT, conformational perturbations caused by a single amino acid substitution result in polymerization in vivo and predisposes to disease. To test whether the polymerization of PAI-2 is due to aberrations in the breach region, we constructed substitution mutants of PAI-2 with conserved residues in this region. Analysis of the mutants revealed that deviations in the breach region modulate but are not the major cause of PAI-2 polymerization. Rather, PAI-2 exists in a highly polymerogenic conformation and does not require conformational rearrangements before polymerization can take place.
2型纤溶酶原激活物抑制剂(PAI-2)的野生型形式和α1抗胰蛋白酶(α1AT)的致病性Z突变体是通过环-片层机制自发聚合的丝氨酸蛋白酶抑制剂。与共有丝氨酸蛋白酶抑制剂序列相比,PAI-2和Z-α1AT在位于Aβ片层顶部的所谓缺口区域都存在偏差。就Z-α1AT而言,单个氨基酸取代引起的构象扰动会导致体内聚合,并易患疾病。为了测试PAI-2的聚合是否是由于缺口区域的异常,我们构建了该区域具有保守残基的PAI-2替代突变体。对突变体的分析表明,缺口区域的偏差会调节但不是PAI-2聚合的主要原因。相反,PAI-2以高度易聚合的构象存在,在聚合发生之前不需要构象重排。