Dalal Seema, Ragheb Daniel R T, Klemba Michael
Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA.
Mol Biochem Parasitol. 2012 May;183(1):70-7. doi: 10.1016/j.molbiopara.2012.02.003. Epub 2012 Feb 13.
The M1-family aminopeptidase PfA-M1 catalyzes the last step in the catabolism of human hemoglobin to amino acids in the Plasmodium falciparum food vacuole. In this study, the structural features of the substrate that promote efficient PfA-M1-catalyzed peptide bond hydrolysis were analyzed. X-Ala and Ala-X dipeptide substrates were employed to characterize the specificities of the enzyme's S1 and S1' subsites. Both subsites exhibited a preference for basic and hydrophobic sidechains over polar and acidic sidechains. The relative specificity of the S1 subsite was similar over the pH range 5.5-7.5. Substrate P1 and P1' residues affected both K(m) and k(cat), revealing that sidechain-subsite interactions not only drive the formation of the Michaelis complex but also influence the rates of ensuing chemical steps. Only a small fraction of the available binding energy was exploited in interactions between substrate sidechains and the S1 and S1' subsites, which indicates a modest level of complementarity. There was no correlation between S1 and S1' specificities and amino acid abundance in hemoglobin. Interactions between PfA-M1 and the backbone atoms of the P1' and P2' residues as well as the P2' sidechain further contributed to the catalytic efficiency of substrate hydrolysis. By demonstrating the engagement of multiple, broad-specificity subsites in PfA-M1, these studies provide insight into how this enzyme is able to efficiently generate amino acids from highly sequence-diverse di- and oligopeptides in the food vacuole.
M1家族氨肽酶PfA-M1催化恶性疟原虫食物泡中人类血红蛋白分解为氨基酸的最后一步反应。在本研究中,分析了促进PfA-M1高效催化肽键水解的底物结构特征。使用X-Ala和Ala-X二肽底物来表征该酶S1和S1'亚位点的特异性。两个亚位点对碱性和疏水性侧链的偏好均高于极性和酸性侧链。在pH 5.5-7.5范围内,S1亚位点的相对特异性相似。底物P1和P1'残基影响K(m)和k(cat),表明侧链-亚位点相互作用不仅驱动米氏复合物的形成,还影响后续化学反应步骤的速率。底物侧链与S1和S1'亚位点之间的相互作用仅利用了一小部分可用结合能,这表明互补性水平适中。S1和S1'特异性与血红蛋白中氨基酸丰度之间没有相关性。PfA-M1与P1'和P2'残基的主链原子以及P2'侧链之间的相互作用进一步提高了底物水解的催化效率。通过证明PfA-M1中多个广泛特异性亚位点的参与,这些研究深入了解了该酶如何能够在食物泡中从高度序列多样的二肽和寡肽高效生成氨基酸。