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病毒和同种异体表位向Ltk-细胞新型突变体的MHC I类抗原加工途径的差异募集。单纯疱疹病毒/MHC I类限制/免疫识别/抗原加工/抗原呈递/流感病毒

Differential recruitment of viral and allo-epitopes into the MHC class I antigen processing pathway of a novel mutant of Ltk- cells. HSV/MHC class I restriction/immune recognition/antigen processing/antigen presentation/influenza virus.

作者信息

Lippé R, Kolaitis G, Michaelis C, Tufaro F, Jefferies W A

机构信息

Department of Microbiology, University of British Columbia, Vancouver, Canada.

出版信息

J Immunol. 1993 Apr 15;150(8 Pt 1):3170-9.

PMID:7682234
Abstract

It is generally thought that the Ag processing pathways for endogenously synthesized proteins are the same for allo and viral Ag processing. However, this view does not take into consideration the diversity of specialized maturation and assembly pathways for viruses. In particular, viral assembly that takes place within intracellular membranes may require unique Ag processing steps. In this study we sought to assess this possibility. Hence, we describe the CTL response against a murine Ltk- cell derivative, gro29, which was previously shown to be defective in the propagation of herpes simplex virus type 1 (HSV-1). In HSV-1-infected gro29 cells, viral polypeptides are synthesized in normal amounts and viral assembly takes place. However, transport of the assembled particles is defective in these cells, resulting in the accumulation of noninfectious virus in cytoplasmic vesicles, and a reduction in the release of viral particles by at least 2000-fold. We show that the rate of transport of individual endogenous proteins through the organelles of the secretory pathway is also impaired, but only by roughly 50%, suggesting that the defect in this cell line affects the transport of particles to a greater extent than the transport of individual proteins. It is also shown that allogeneic and influenza A- specific CTL responses are indistinguishable between gro29 and Ltk- cells, as is the response against target cells pretreated with a influenza A derived synthetic peptide. By contrast, HSV-1-infected gro29 cells are approximately eightfold less sensitive than infected Ltk- cells to lysis by HSV-1-specific CTL. This illustrates that in contrast to the allogeneic and influenza specific responses, the recruitment of herpes virus-specific Ag into the Ag-processing pathway is dependent on a cellular function that is also required for viral maturation and egress. We believe that this is the first demonstration of this phenomenon.

摘要

一般认为,内源性合成蛋白的抗原加工途径对于同种异体抗原和病毒抗原加工来说是相同的。然而,这种观点没有考虑到病毒特殊的成熟和组装途径的多样性。特别是,在细胞内膜内发生的病毒组装可能需要独特的抗原加工步骤。在本研究中,我们试图评估这种可能性。因此,我们描述了针对小鼠Ltk-细胞衍生物gro29的细胞毒性T淋巴细胞(CTL)反应,先前已证明该细胞在单纯疱疹病毒1型(HSV-1)的增殖方面存在缺陷。在感染HSV-1的gro29细胞中,病毒多肽以正常量合成且病毒组装发生。然而,这些细胞中组装颗粒的运输存在缺陷,导致非感染性病毒在细胞质小泡中积累,并且病毒颗粒的释放减少至少2000倍。我们表明,单个内源性蛋白通过分泌途径细胞器的运输速率也受到损害,但仅约50%,这表明该细胞系中的缺陷对颗粒运输的影响比对单个蛋白运输的影响更大。还表明,gro29细胞和Ltk-细胞之间的同种异体和甲型流感特异性CTL反应没有区别,对用甲型流感衍生合成肽预处理的靶细胞的反应也是如此。相比之下,感染HSV-1的gro29细胞对HSV-1特异性CTL裂解的敏感性比感染的Ltk-细胞低约八倍。这说明与同种异体和流感特异性反应不同,将疱疹病毒特异性抗原募集到抗原加工途径中依赖于病毒成熟和释放也需要的细胞功能。我们相信这是该现象的首次证明。

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