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Sortase-mediated modification of αDEC205 affords optimization of antigen presentation and immunization against a set of viral epitopes

机译:分选酶介导的αDEC205修饰可优化抗原呈递和针对一组病毒表位的免疫

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摘要

A monoclonal antibody against the C-type lectin DEC205 (αDEC205) is an effective vehicle for delivery of antigens to dendritic cells through creation of covalent αDEC205–antigen adducts. These adducts can induce antigen-specific T-cell immune responses or tolerance. We exploit the transpeptidase activity of sortase to install modified peptides and protein-sized antigens onto the heavy chain of αDEC205, including linkers that contain nonnatural amino acids. We demonstrate stoichiometric site-specific labeling on a scale not easily achievable by genetic fusions (49 distinct fusions in this report). We conjugated a biotinylated version of a class I MHC-restricted epitope to unlabeled αDEC205 and monitored epitope generation upon binding of the adduct to dendritic cells. Our results show transfer of αDEC205 heavy chain to the cytoplasm, followed by proteasomal degradation. Introduction of a labile dipeptide linker at the N terminus of a T-cell epitope improves proteasome-dependent class I MHC-restricted peptide cross-presentation when delivered by αDEC205 in vitro and in vivo. We also conjugated αDEC205 with a linker-optimized peptide library of known CD8 T-cell epitopes from the mouse γ-herpes virus 68. Animals immunized with such conjugates displayed a 10-fold reduction in viral load.
机译:抗C型凝集素DEC205(αDEC205)的单克隆抗体是通过产生共价αDEC205-抗原加合物将抗原递送至树突状细胞的有效载体。这些加合物可以诱导抗原特异性T细胞免疫应答或耐受性。我们利用分选酶的转肽酶活性将修饰的肽和蛋白质大小的抗原安装到αDEC205的重链上,包括含有非天然氨基酸的接头。我们证明了通过化学融合(在本报告中有49种不同的融合)不容易实现的规模上的化学计量位点特异性标记。我们将生物素化的I类MHC限制性表位缀合到未标记的αDEC205,并在加合物与树突状细胞结合后监测表位的生成。我们的结果表明,αDEC205重链转移至细胞质,随后发生蛋白酶体降解。当在体外和体内通过αDEC205递送时,在T细胞表位的N末端引入不稳定的二肽接头可改善蛋白酶体依赖性I类MHC限制性肽的交叉呈递。我们还将αDEC205与来自小鼠γ疱疹病毒68的已知CD8 T细胞表位的接头优化肽库进行缀合。用此类缀合物免疫的动物显示出病毒载量降低了10倍。

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