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博来霉素水解酶在抗原呈递及CD8 T细胞反应产生中的作用分析

Analysis of the role of bleomycin hydrolase in antigen presentation and the generation of CD8 T cell responses.

作者信息

Towne Charles F, York Ian A, Watkin Levi B, Lazo John S, Rock Kenneth L

机构信息

Department of Pathology, University of Massachusetts Medical School, Worcester, MA 01655, USA.

出版信息

J Immunol. 2007 Jun 1;178(11):6923-30. doi: 10.4049/jimmunol.178.11.6923.

DOI:10.4049/jimmunol.178.11.6923
PMID:17513741
Abstract

Long oligopeptides (>10 residues) are generated during the catabolism of cellular proteins in the cytosol. To be presented to T cells, such peptides must be trimmed by aminopeptidases to the proper size (typically 8-10 residues) to stably bind to MHC class I molecules. Aminopeptidases also destroy epitopes by trimming them to even shorter lengths. Bleomycin hydrolase (BH) is a cytosolic aminopeptidase that has been suggested to play a key role in generating MHC class I-presented peptides. We show that BH-deficient cells from mice are unimpaired in their ability to present epitopes from N-extended precursors or whole Ags and express normal levels of MHC class I molecules. Similarly, BH-deficient mice develop normal CD8(+) T cell responses to eight epitopes from three different viruses in vivo. Therefore, BH by itself is not essential for the generation or destruction of MHC class I peptides. In contrast, when BH(-/-) mice are crossed to mice lacking another cytosolic aminopeptidase, leucine aminopeptidase, the resulting BH(-/-)leucine aminopeptidase(-/-) progeny show a selective increase in CD8(+) T cell responses to the gp276 epitope from lymphocytic choriomeningitis virus, whereas the ability to present and respond to several other epitopes is unchanged. Therefore, BH does influence presentation of some Ags, although its role is largely redundant with other aminopeptidases.

摘要

长寡肽(>10个残基)在细胞溶质中细胞蛋白质的分解代谢过程中产生。为了呈递给T细胞,此类肽必须被氨肽酶修剪至合适大小(通常为8-10个残基),以便稳定结合到MHC I类分子上。氨肽酶也会通过将表位修剪至更短长度来破坏它们。博来霉素水解酶(BH)是一种胞质氨肽酶,有人认为它在产生MHC I类呈递肽方面起关键作用。我们发现,来自小鼠的BH缺陷细胞在呈递来自N端延伸前体或完整抗原的表位以及表达正常水平的MHC I类分子的能力方面并未受损。同样,BH缺陷小鼠在体内对来自三种不同病毒的八个表位产生正常的CD8(+) T细胞应答。因此,BH自身对于MHC I类肽的产生或破坏并非必不可少。相比之下,当将BH(-/-)小鼠与缺乏另一种胞质氨肽酶——亮氨酸氨肽酶的小鼠杂交时,所产生的BH(-/-)亮氨酸氨肽酶(-/-)后代对淋巴细胞性脉络丛脑膜炎病毒的gp276表位的CD8(+) T细胞应答选择性增加,而呈递和应答其他几个表位的能力则未改变。因此,BH确实会影响某些抗原的呈递,尽管它的作用在很大程度上与其他氨肽酶冗余。

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