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源自HIV-1 Nef的凋亡肽可导致小鼠淋巴细胞耗竭。

Apoptotic peptides derived from HIV-1 Nef induce lymphocyte depletion in mice.

作者信息

Huang Ming-Bo, James Cleve O, Powell Michael D, Bond Vincent C

机构信息

Department of Microbiology, Biochemistry, and Immunology, Morehouse School of Medicine, Atlanta, Georgia 30310, USA.

出版信息

Ethn Dis. 2008 Spring;18(2 Suppl 2):S2-30-7.

Abstract

INTRODUCTION

We have developed a mouse model to examine the effects of host exposure (ie, hematopoietic system) to secreted HIV-1 Nef or peptides derived from Nef.

METHODS

We used a combination of terminal uridine deoxynucleotidyl transferase (dUTP) nick end labeling (TUNEL) assays and CD4+ cell counts to assess the status of circulating immune cells in mice treated with Nef-derived proteins.

RESULTS

Mice treated with peptides derived from HIV-1 Nef protein displayed significant increases in apoptotic CD4+ lymphocytes and thymus cells and significant decreases in the numbers of circulating CD4+ lymphocytes. No effects were observed in mice treated with controls. There was a clear dose- and time-response relationship between cell changes and the amount of protein or peptide. induction of multiple markers of apoptosis such as DNA laddering and caspase 3 activation was observed during dose- or time-response experiments. Cell death and lymphocyte depletion were blocked by induction of a humoral response to the HIV Nef apoptotic epitope.

CONCLUSIONS

Extracellular Nef can induce apoptosis and lymphocyte depletion in vivo. Appropriate antibody response can block these effects, but the apoptotic motifs in Nef are thought to be poorly immunogenic.

摘要

引言

我们建立了一种小鼠模型,以研究宿主暴露(即造血系统)于分泌型HIV-1 Nef或源自Nef的肽的影响。

方法

我们结合使用末端脱氧核苷酸转移酶(dUTP)缺口末端标记(TUNEL)分析和CD4 +细胞计数,以评估用源自Nef的蛋白质处理的小鼠中循环免疫细胞的状态。

结果

用源自HIV-1 Nef蛋白的肽处理的小鼠,凋亡的CD4 +淋巴细胞和胸腺细胞显著增加,循环CD4 +淋巴细胞数量显著减少。在接受对照处理的小鼠中未观察到影响。细胞变化与蛋白质或肽的量之间存在明显的剂量和时间反应关系。在剂量或时间反应实验中观察到诱导多种凋亡标志物,如DNA梯状条带和半胱天冬酶3激活。对HIV Nef凋亡表位的体液反应诱导可阻断细胞死亡和淋巴细胞耗竭。

结论

细胞外Nef可在体内诱导凋亡和淋巴细胞耗竭。适当的抗体反应可阻断这些效应,但Nef中的凋亡基序被认为免疫原性较差。

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Characterization of Nef-CXCR4 interactions important for apoptosis induction.
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