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HIV-1 Nef通过组成型途径促进细胞表面II类主要组织相容性复合体分子的内吞作用。

HIV-1 Nef promotes endocytosis of cell surface MHC class II molecules via a constitutive pathway.

作者信息

Chaudhry Ashutosh, Verghese Divya Anna, Das Suman Ranjan, Jameel Shahid, George Anna, Bal Vineeta, Mayor Satyajit, Rath Satyajit

机构信息

National Institute of Immunology, New Delhi, India.

出版信息

J Immunol. 2009 Aug 15;183(4):2415-24. doi: 10.4049/jimmunol.0804014. Epub 2009 Jul 20.

Abstract

HIV-1 Nef has been reported to disrupt MHC class II (MHCII)-mediated Ag presentation by a dual strategy that comprises a reduction in cell surface levels of peptide-loaded mature MHCII molecules and a up-regulation of immature MHCII molecules. We show that Nef achieves relocation of MHCII away from the cell surface in monocytic cells by both delaying its transport to the cell surface and by accelerating endocytic removal of cell surface MHCII to a lysosomal compartment. Nef-induced MHCII endocytosis is cholesterol-sensitive but clathrin- and dynamin-independent. Internalized MHCII molecules traverse the early endosomal system and colocalize with pinocytic cargo before reaching lysosomes. Nef-triggered MHCII endocytosis requires Rab5 activity and lyst function, whereas lysosomal trafficking of internalized MHCII molecules requires Rab7 activity. We further show that a similar pathway can remove peptide-MHCII complexes from the surface of monocytic cells not expressing Nef. Our data suggest that Nef uses mechanisms involved in normal MHCII recycling and turnover to mediate the delivery of cell surface MHCII to a lysosomal destination. Thus, Nef-mediated endocytosis of MHCII provides a novel perspective on the regulation of normal MHCII trafficking.

摘要

据报道,HIV-1 Nef通过一种双重策略破坏MHC II类(MHCII)介导的抗原呈递,该策略包括降低肽负载的成熟MHCII分子的细胞表面水平以及上调未成熟MHCII分子。我们发现,Nef通过延迟其向细胞表面的转运以及加速细胞表面MHCII向溶酶体区室的内吞清除,实现了单核细胞中MHCII从细胞表面的重新定位。Nef诱导的MHCII内吞作用对胆固醇敏感,但不依赖网格蛋白和发动蛋白。内化的MHCII分子穿过早期内体系统,并在到达溶酶体之前与胞饮货物共定位。Nef触发的MHCII内吞作用需要Rab5活性和溶酶体功能,而内化的MHCII分子的溶酶体运输需要Rab7活性。我们进一步表明,类似的途径可以从不表达Nef的单核细胞表面去除肽-MHCII复合物。我们的数据表明,Nef利用参与正常MHCII循环和周转的机制来介导细胞表面MHCII向溶酶体目的地的递送。因此,Nef介导的MHCII内吞作用为正常MHCII运输的调节提供了新的视角。

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