Busch R, Reich Z, Zaller D M, Sloan V, Mellins E D
Department of Pediatrics, Stanford University, Stanford, California 94305, USA.
J Biol Chem. 1998 Oct 16;273(42):27557-64. doi: 10.1074/jbc.273.42.27557.
HLA-DM catalyzes the release of invariant chain fragments from newly synthesized major histocompatibility complex (MHC) class II molecules, stabilizes empty class II molecules, and edits class II-associated peptides by preferentially releasing those that are loosely bound. The ability of HLA-DM to carry out these functions in vitro is pH dependent, with an optimum at pH 4.5-5.5 and poor activity at pH 7. The structural basis for these properties of HLA-DM is unknown. Sequence homology suggests that HLA-DM resembles classical, peptide-binding MHC class II molecules. In this study, we examined whether HLA-DM has a secondary structure composition consistent with an MHC fold and whether HLA-DM changes conformation between pH 5 and pH 7. Far-UV circular dichroism (CD) spectra of recombinant soluble HLA-DM (sDM) indicate that HLA-DM belongs to the alpha/beta class of proteins and structurally resembles both MHC class I and class II molecules. The CD peak around 198 nm increases upon going from neutral to endosomal pH and drops sharply upon denaturation below pH 3.5, distinguishing at least three states of sDM: the denatured state and two highly similar folded states. Fluorescence emission spectra show a slight blue-shift and a approximately 20% drop in intensity at pH 5 compared with pH 7. Unfolding experiments using guanidinium chloride show that the stability of sDM is somewhat reduced but not lost at pH 5. These results indicate that sDM undergoes a pH-dependent conformational change between neutral and endosomal pH. The change seems to involve both hydrogen bonding patterns and the hydrophobic core of sDM and may contribute to the pH dependence of DM activity.
HLA - DM催化从新合成的主要组织相容性复合体(MHC)II类分子中释放恒定链片段,稳定空载的II类分子,并通过优先释放那些松散结合的肽来编辑与II类相关的肽。HLA - DM在体外执行这些功能的能力取决于pH值,在pH 4.5 - 5.5时最佳,在pH 7时活性较差。HLA - DM这些特性的结构基础尚不清楚。序列同源性表明HLA - DM类似于经典的、结合肽的MHC II类分子。在本研究中,我们研究了HLA - DM是否具有与MHC折叠一致的二级结构组成,以及HLA - DM在pH 5和pH 7之间是否会发生构象变化。重组可溶性HLA - DM(sDM)的远紫外圆二色性(CD)光谱表明,HLA - DM属于α/β类蛋白质,在结构上类似于MHC I类和II类分子。从中性pH值到内体pH值时,198 nm左右的CD峰增加,而在pH值低于3.5时变性时急剧下降,这区分了sDM的至少三种状态:变性状态和两种高度相似的折叠状态。荧光发射光谱显示,与pH 7相比,在pH 5时略有蓝移且强度下降约20%。使用氯化胍的展开实验表明,sDM的稳定性在pH 5时有所降低但并未丧失。这些结果表明,sDM在中性和内体pH值之间经历了pH依赖性的构象变化。这种变化似乎涉及sDM的氢键模式和疏水核心,可能导致DM活性对pH的依赖性。