From the Department of Molecular Biosciences, Northwestern University, Evanston, Illinois 60208.
From the Department of Molecular Biosciences, Northwestern University, Evanston, Illinois 60208
J Biol Chem. 2019 Jan 18;294(3):1070-1082. doi: 10.1074/jbc.RA118.004479. Epub 2018 Nov 19.
In nontypeable (NTHi), the oligopeptide-binding protein (OppA) serves as the substrate-binding protein (SBP) of the oligopeptide transport system responsible for the import of peptides. We solved the crystal structure of nthiOppA in complex with hydrophobic peptides of various sizes. Our novel hexapeptide complex demonstrates the flexibility of the nthiOppA-binding cavity to expand and accommodate the longer peptide while maintaining similar protein-peptide interactions of smaller peptide complexes. In addition to acquiring peptides from the host environment, as a heme auxotroph NTHi utilizes host hemoproteins as a source of essential iron. OppA is a member of the Cluster C SBP family, and unlike other SBP families, some members recognize two distinctly different substrates. DppA (dipeptide), MppA (murein tripeptide), and SapA (antimicrobial peptides) are Cluster C proteins known to also transport heme. We observed nthiOppA shares this heme-binding characteristic and established heme specificity and affinity by surface plasmon resonance (SPR) of the four Cluster C proteins in NTHi. Ligand-docking studies predicted a distinct heme-specific cleft in the binding pocket, and using SPR competition assays, we observed that heme does not directly compete with peptide in the substrate-binding pocket. Additionally, we identified that the individual nthiOppA domains differentially contribute to substrate binding, with one domain playing a dominant role in heme binding and the other in peptide binding. Our results demonstrate the multisubstrate specificity of nthiOppA and the role of NTHi Cluster C proteins in the heme-uptake pathway for this pathogen.
在非典型流感嗜血杆菌(NTHi)中,寡肽结合蛋白(OppA)作为负责肽类导入的寡肽运输系统的底物结合蛋白(SBP)。我们解析了与各种大小疏水性肽结合的 nthiOppA 的晶体结构。我们新颖的六肽复合物证明了 nthiOppA 结合腔的灵活性,可以扩张并容纳更长的肽,同时保持与较小肽复合物相似的蛋白-肽相互作用。除了从宿主环境中获取肽外,作为血红素营养缺陷型 NTHi 还利用宿主血红素蛋白作为必需铁的来源。OppA 是 Cluster C SBP 家族的成员,与其他 SBP 家族不同,一些成员识别两种截然不同的底物。DppA(二肽)、MppA(肽聚糖三肽)和 SapA(抗菌肽)是已知也能转运血红素的 Cluster C 蛋白。我们观察到 nthiOppA 具有这种血红素结合特性,并通过 NTHi 中四种 Cluster C 蛋白的表面等离子体共振(SPR)确定了血红素的特异性和亲和力。配体对接研究预测了结合口袋中存在独特的血红素特异性裂隙,通过 SPR 竞争测定,我们观察到血红素不会直接与底物结合口袋中的肽竞争。此外,我们确定了 nthiOppA 的各个结构域对底物结合的不同贡献,一个结构域在血红素结合中起主导作用,另一个在肽结合中起主导作用。我们的研究结果表明 nthiOppA 具有多底物特异性,以及 NTHi Cluster C 蛋白在该病原体血红素摄取途径中的作用。