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小鼠抗腺病毒细胞毒性T淋巴细胞。E3 gp19K可抑制裂解,但E3 14.7K不能。

Mouse anti-adenovirus cytotoxic T lymphocytes. Inhibition of lysis by E3 gp19K but not E3 14.7K.

作者信息

Rawle F C, Tollefson A E, Wold W S, Gooding L R

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322.

出版信息

J Immunol. 1989 Sep 15;143(6):2031-7.

PMID:2789254
Abstract

Early region E3 of adenovirus (Ad) appears to encode proteins involved in the interaction of the virus with the host immune system. The E3 region 19-kDa glycoprotein (gp19K) binds to class I MHC Ag in the endoplasmic reticulum and inhibits their transport to the cell surface; it has been proposed that this protects virus infected cells from lysis by CTL. We have found that the E3 14.7-kDa protein (14.7K) inhibits lysis of infected cells by TNF, and here we show that it also protects cells from lysis by lymphotoxin, which has been implicated as a mediator of CTL lysis. We have developed a method for producing CTL specific for human Ad2 and Ad5 in mice, in order to test directly which of the genes in the E3 region protect infected cells from lysis by virus specific CTL. The presence of the E3 region inhibits both the induction of Ad-specific CTL in culture and the lysis of infected target cells by these CTL. The inhibition varies between different mouse strains, with almost complete inhibition in C57BL/10 (H-2b) mice, partial inhibition with BALB/c (H-2d) and little or no inhibition with C3H (H-2k); results were similar for Ad2 and Ad5. By using a panel of E3 deletion mutants, inhibition of target cell lysis by Ad5 specific CTL was mapped exclusively to the gp19K gene. The 14.7K gene had no effect on CTL lysis despite its ability to protect cells against lysis by lymphotoxin. gp19K was synthesized abundantly in mouse cells by mutants retaining the gp19K gene; some mutant forms of the protein were synthesized but were nonfunctional. These data support the hypothesis that gp19K can protect Ad infected cells against lysis by virus specific CTL.

摘要

腺病毒(Ad)的早期区域E3似乎编码参与病毒与宿主免疫系统相互作用的蛋白质。E3区域的19-kDa糖蛋白(gp19K)在内质网中与I类MHC抗原结合,并抑制其向细胞表面的转运;有人提出,这可保护病毒感染的细胞免受CTL的裂解。我们发现E3 14.7-kDa蛋白(14.7K)可抑制TNF对感染细胞的裂解,并且在此我们表明它还可保护细胞免受淋巴毒素的裂解,淋巴毒素被认为是CTL裂解的介质。我们已经开发出一种在小鼠中产生针对人Ad2和Ad5的CTL的方法,以便直接测试E3区域中的哪些基因可保护感染细胞免受病毒特异性CTL的裂解。E3区域的存在既抑制培养物中Ad特异性CTL的诱导,也抑制这些CTL对感染靶细胞的裂解。不同小鼠品系的抑制情况有所不同,在C57BL/10(H-2b)小鼠中几乎完全抑制,在BALB/c(H-2d)小鼠中部分抑制,而在C3H(H-2k)小鼠中几乎没有或没有抑制;Ad2和Ad5的结果相似。通过使用一组E3缺失突变体,将Ad5特异性CTL对靶细胞裂解的抑制作用专门定位到gp19K基因。尽管14.7K基因能够保护细胞免受淋巴毒素的裂解,但对CTL裂解没有影响。保留gp19K基因的突变体在小鼠细胞中大量合成gp19K;该蛋白的一些突变形式被合成但无功能。这些数据支持gp19K可以保护Ad感染的细胞免受病毒特异性CTL裂解的假说。

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