Marcondes M F M, Alves F M, Assis D M, Hirata I Y, Juliano L, Oliveira V, Juliano M A
Department of Biophysics, Escola Paulista de Medicina, Universidade Federal de São Paulo, Rua Pedro de Toledo, 669 - 7° andar, São Paulo, Brazil.
FEBS Open Bio. 2015 May 16;5:429-36. doi: 10.1016/j.fob.2015.05.004. eCollection 2015.
The substrate specificity of recombinant human mitochondrial intermediate peptidase (hMIP) using a synthetic support-bound FRET peptide library is presented. The collected fluorescent beads, which contained the hydrolysed peptides generated by hMIP, were sequenced by Edman degradation. The results showed that this peptidase presents a remarkable preference for polar uncharged residues at P1 and P1' substrate positions: Ser = Gln > Thr at P1 and Ser > Thr at P1'. Non-polar residues were frequent at the substrate P3, P2, P2' and P3' positions. Analysis of the predicted MIP processing sites in imported mitochondrial matrix proteins shows these cleavages indeed occur between polar uncharged residues. Previous analysis of these processing sites indicated the importance of positions far from the MIP cleavage site, namely the presence of a hydrophobic residue (Phe or Leu) at P8 and a polar uncharged residue (Ser or Thr) at P5. To evaluate this, additional kinetic analyses were carried out, using fluorogenic substrates synthesized based on the processing sites attributed to MIP. The results described here underscore the importance of the P1 and P1' substrate positions for the hydrolytic activity of hMIP. The information presented in this work will help in the design of new substrate-based inhibitors for this peptidase.
本文介绍了使用合成的固相荧光共振能量转移(FRET)肽库对重组人线粒体中间肽酶(hMIP)的底物特异性进行的研究。通过埃德曼降解法对收集到的含有hMIP水解产生的肽段的荧光珠进行测序。结果表明,该肽酶对P1和P1'底物位置的极性不带电荷残基表现出明显偏好:P1位置上Ser = Gln > Thr,P1'位置上Ser > Thr。非极性残基在底物的P3、P2、P2'和P3'位置较为常见。对导入线粒体基质蛋白中预测的MIP加工位点的分析表明,这些切割确实发生在极性不带电荷的残基之间。先前对这些加工位点的分析表明,远离MIP切割位点的位置很重要,即P8位置存在疏水残基(Phe或Leu),P5位置存在极性不带电荷残基(Ser或Thr)。为了评估这一点,使用基于归因于MIP的加工位点合成的荧光底物进行了额外的动力学分析。本文所述结果强调了P1和P1'底物位置对hMIP水解活性的重要性。这项工作中提供的信息将有助于设计针对该肽酶的新型基于底物的抑制剂。