Department of Biological Sciences, University of Massachusetts Lowell, Lowell, Massachusetts, USA.
Molecular Cardiology Research Institute, Tufts Medical Center, Boston, Massachusetts, USA.
Immunology. 2024 Jan;171(1):131-145. doi: 10.1111/imm.13709. Epub 2023 Oct 19.
Endoplasmic reticulum aminopeptidase 1 (ERAP1) belongs to the oxytocinase subfamily of M1 aminopeptidases (M1APs), which are a diverse family of metalloenzymes involved in a wide range of functions and have been implicated in various chronic and infectious diseases of humans. ERAP1 trims antigenic precursors into correct sizes (8-10 residues long) for Major Histocompatibility Complex (MHC) presentation, by a unique molecular ruler mechanism in which it makes concurrent bindings to substrate N- and C-termini. We have previously determined four crystal structures of ERAP1 C-terminal regulatory domain (termed ERAP1_C domain) in complex with peptide carboxyl (PC)-ends that carry various anchor residues, and identified a specificity subsite for recognizing the PC anchor side chain, denoted as the SC subsite to follow the conventional notations: S1 site for P1, S2 site for P2, and so forth. In this study, we report studies on structure-guided mutational and hydrolysis kinetics, and peptide trimming assays to further examine the functional roles of this SC subsite. Most strikingly, a point mutation V737R results in a change of substrate preference from a hydrophobic to a negatively charged PC anchor residue; the latter is presumed to be a poor substrate for WT ERAP1. These studies validate the crystallographic observations that this SC subsite is directly involved in binding and recognition of the substrate PC anchor and presents a potential target to modulate MHC-restricted immunopeptidomes.
内质网氨肽酶 1(ERAP1)属于催产素酶亚家族的 M1 氨肽酶(M1APs),这是一个多样化的金属酶家族,参与广泛的功能,并与人类的各种慢性和传染性疾病有关。ERAP1 通过独特的分子尺机制将抗原前体修剪成正确的大小(8-10 个残基长),用于主要组织相容性复合物(MHC)呈递,它同时与底物的 N-和 C-末端结合。我们之前已经确定了 ERAP1 C 端调节结构域(称为 ERAP1_C 结构域)与携带各种锚定残基的肽羧基(PC)末端的四个晶体结构,并确定了一个用于识别 PC 锚定侧链的特异性亚位点,称为 SC 亚位点,以遵循常规符号:S1 位点用于 P1,S2 位点用于 P2 等。在这项研究中,我们报告了结构指导的突变和水解动力学以及肽修剪测定的研究结果,以进一步研究该 SC 亚位点的功能作用。最引人注目的是,点突变 V737R 导致底物偏好从疏水性变为带负电荷的 PC 锚定残基;后者被认为是 WT ERAP1 的不良底物。这些研究验证了晶体学观察结果,即该 SC 亚位点直接参与结合和识别底物 PC 锚,并提供了一个潜在的靶点来调节 MHC 受限的免疫肽组。