Shakushiro Kohsuke, Yamasaki Yasuomi, Nishikawa Makiya, Takakura Yoshinobu
Department of Biopharmaceutics and Drug Metabolism, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, Japan.
Immunology. 2004 Jun;112(2):211-8. doi: 10.1111/j.1365-2567.2004.01871.x.
Exogenous antigens endocytosed in large amounts by antigen-presenting cells (APC) are presented on major histocompatibility complex (MHC) class I molecules as well as on class II molecules, a process called cross-presentation. Among APC, dendritic cells (DC) play a key role in cross-presentation by transporting internalized antigen to the cytosol. The present study shows that ovalbumin (OVA) introduced with negative charges by succinylation (Suc-OVA), maleylation (Mal-OVA) or cis-aconitylation (Aco-OVA) was efficiently taken up by DC via scavenger receptors (SR). Mal-OVA and Aco-OVA were efficiently cross-presented by DC, while cross-presentation of Suc-OVA was hardly observed. MHC class I presentation of acylated OVA introduced directly into the cytosol was inefficient and presentation of exogenous native OVA but not of Aco-OVA was markedly augmented by chloroquine, an inhibitor of endosomal acidification, suggesting that deacylation in endosomes or lysosomes is necessary for cross-presentation of acylated OVA. MHC class I presentation of exogenous native OVA and Aco-OVA by DC was blocked by lactacystin and brefeldin A, demonstrating that exogenous antigens taken up by DC are cross-presented through the conventional cytosolic pathway. Therefore, SR-mediated delivery of antigen to DC leads to efficient cross-presentation, although the pathway of chemical modification should be considered.
抗原呈递细胞(APC)大量内吞的外源性抗原会在主要组织相容性复合体(MHC)I类分子以及II类分子上呈递,这一过程称为交叉呈递。在APC中,树突状细胞(DC)通过将内化抗原转运至胞质溶胶在交叉呈递中起关键作用。本研究表明,通过琥珀酰化(Suc-OVA)、马来酰化(Mal-OVA)或顺乌头酰化(Aco-OVA)引入负电荷的卵清蛋白(OVA)可通过清道夫受体(SR)被DC有效摄取。Mal-OVA和Aco-OVA可被DC有效交叉呈递,而几乎未观察到Suc-OVA的交叉呈递。直接引入胞质溶胶的酰化OVA的MHC I类呈递效率低下,内体酸化抑制剂氯喹可显著增强外源性天然OVA而非Aco-OVA的呈递,这表明内体或溶酶体中的去酰化对于酰化OVA的交叉呈递是必要的。DC对外源性天然OVA和Aco-OVA的MHC I类呈递被乳胞素和布雷菲德菌素A阻断,这表明DC摄取的外源性抗原是通过传统的胞质途径进行交叉呈递的。因此,尽管应考虑化学修饰途径,但SR介导的抗原向DC的递送可导致有效的交叉呈递。