Ferrante Andrea, Anderson Matthew W, Klug Candice S, Gorski Jack
Blood Research Institute, Blood Center of Wisconsin, Milwaukee, WI, USA.
PLoS One. 2008;3(11):e3722. doi: 10.1371/journal.pone.0003722. Epub 2008 Nov 13.
HLA-DM (DM) mediates exchange of peptides bound to MHC class II (MHCII) during the epitope selection process. Although DM has been shown to have two activities, peptide release and MHC class II refolding, a clear characterization of the mechanism by which DM facilitates peptide exchange has remained elusive.
METHODOLOGY/PRINCIPAL FINDINGS: We have previously demonstrated that peptide binding to and dissociation from MHCII in the absence of DM are cooperative processes, likely related to conformational changes in the peptide-MHCII complex. Here we show that DM promotes peptide release by a non-cooperative process, whereas it enhances cooperative folding of the exchange peptide. Through electron paramagnetic resonance (EPR) and fluorescence polarization (FP) we show that DM releases prebound peptide very poorly in the absence of a candidate peptide for the exchange process. The affinity and concentration of the candidate peptide are also important for the release of the prebound peptide. Increased fluorescence energy transfer between the prebound and exchange peptides in the presence of DM is evidence for a tetramolecular complex which resolves in favor of the peptide that has superior folding properties.
CONCLUSION/SIGNIFICANCE: This study shows that both the peptide releasing activity on loaded MHCII and the facilitating of MHCII binding by a candidate exchange peptide are integral to DM mediated epitope selection. The exchange process is initiated only in the presence of candidate peptides, avoiding possible release of a prebound peptide and loss of a potential epitope. In a tetramolecular transitional complex, the candidate peptides are checked for their ability to replace the pre-bound peptide with a geometry that allows the rebinding of the original peptide. Thus, DM promotes a "compare-exchange" sorting algorithm on an available peptide pool. Such a "third party"-mediated mechanism may be generally applicable for diverse ligand recognition in other biological systems.
HLA-DM(DM)在表位选择过程中介导与MHC II类分子(MHCII)结合的肽段的交换。尽管DM已被证明具有两种活性,即肽段释放和MHC II类分子重折叠,但DM促进肽段交换的机制的清晰特征仍不清楚。
方法/主要发现:我们之前已经证明,在没有DM的情况下,肽段与MHCII的结合和解离是协同过程,可能与肽-MHCII复合物的构象变化有关。在这里我们表明,DM通过非协同过程促进肽段释放,而它增强交换肽段的协同折叠。通过电子顺磁共振(EPR)和荧光偏振(FP),我们表明在没有用于交换过程的候选肽段的情况下,DM释放预结合肽段的能力很差。候选肽段的亲和力和浓度对于预结合肽段的释放也很重要。在DM存在下,预结合肽段和交换肽段之间荧光能量转移的增加证明了一种四分子复合物的存在,该复合物有利于具有更好折叠特性的肽段。
结论/意义:这项研究表明,加载有肽段的MHCII上的肽段释放活性以及候选交换肽段对MHCII结合的促进作用都是DM介导的表位选择所必需的。交换过程仅在存在候选肽段时启动,避免了预结合肽段的可能释放和潜在表位的丢失。在四分子过渡复合物中,检查候选肽段以其用允许原始肽段重新结合的几何形状取代预结合肽段的能力。因此,DM在可用肽段库上促进一种“比较-交换”分选算法。这种“第三方”介导的机制可能普遍适用于其他生物系统中的各种配体识别。