HIV Nef通过诱导其底物的异常磷酸化来破坏Lck信号。

Q3 Medicine
Joel Guertin, Pavel Chrobak, Clémence Meunier, Cassandra M Thomson, Zaher Hanna, Paul Jolicoeur
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引用次数: 0

摘要

HIV Nef对TcR近端信号的人类体外研究一直存在争议,并且没有提供其影响的综合图景。在体内,在表达nef的转基因(Tg)胸腺细胞中研究了Lck及其底物(CD3ζ, Zap-70)的酪氨酸(Y)磷酸化(pY)。在Tg细胞中,Lck被错误定位和激活,但pY-CD3ζ水平出乎意料地降低,无论是组成性还是抗cd3ε Ab刺激后。Nef也有利于Lck Y505位点的过度磷酸化和双磷酸化(Y394, Y505) Lck的积累。相反,在抗cd3ε +抗cd4 Ab刺激后,Nef降低了Lck活性,Lck被剥夺了其pY伴侣。在Nef和LckY505F Tg胸腺细胞中,Lck具有相似的活性,但LckY505水平、Zap-70 pY磷酸化和Zap-70活性不同,表明Lck的激活模式不同。用pY位点特异性mAb对Zap-70进行Western blot分析显示,在抗cd3ε Ab刺激后,Zap-70pY292和Zap-70pY493的水平适度增强(后者需要完全激活),与Tg升高的LATpY一致,表明Zap-70是一种半活性激酶。事实上,Nef - Tg小鼠的表型与含有半活性Zap-70突变体的小鼠非常相似。经抗cd3ε +抗cd4刺激后,Tg Zap-70活性和Zap-70pY493水平严重降低,而Zap-70pY292和Zap-70pY319水平几乎未受影响,提示定性Lck缺陷。在双(Nef × LckY505F) Tg小鼠中,LckY505F挽救Nef介导的CD4+ t细胞损失与Zap-70pY和Zap-70活性水平的显著提高相关。因此,Nef以一种独特的方式影响Lck,引发其底物的错误磷酸化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HIV Nef disrupts Lck signaling by inducing aberrant phosphorylation of its substrates.

Human in vitro studies of HIV Nef on TcR proximal signaling have been controversial and have not provided an integrated picture of its impact. Tyrosine (Y) phosphorylation (pY) of Lck and its substrates (CD3ζ, Zap-70) was investigated in vivo, in Nef-expressing transgenic (Tg) thymocytes. In Tg cells, Lck was mis-localized and activated, but the pY-CD3ζ levels were unexpectedly lower, both constitutively and after anti-CD3ε Ab stimulation. Nef also favors the hyperphosphorylation of the Lck Y505 site and the accumulation of doubly phosphorylated (Y394, Y505) Lck. In contrast, after anti-CD3ε+anti-CD4 Ab stimulation, Nef decreased Lck activity and Lck was deprived of its pY partners. In Nef and LckY505F Tg thymocytes, Lck had similar activity but distinct LckY505 levels, Zap-70 pY phosphorylation, and Zap-70 activity, suggesting a different mode of Lck activation. Western blot analysis of Zap-70 with pY site-specific mAb showed modest enhanced levels of Zap-70pY292 and Zap-70pY493 (the latter required for its full activation) constitutively and after anti-CD3ε Ab stimulation, consistent with elevated Tg LATpY and suggesting a semiactive kinase. In fact, phenotypes of Nef Tg mice are very similar to those of mice harboring semiactive Zap-70 mutants. After anti-CD3ε+anti-CD4 stimulation, Tg Zap-70 activity and Zap-70pY493 levels were severely decreased, but Zap-70pY292 and Zap-70pY319 levels were barely affected, suggesting qualitative Lck defect. Rescue of Nef-mediated CD4+ T-cell loss with LckY505F in double (Nef × LckY505F) Tg mice correlated with greatly enhanced levels of Zap-70pY and Zap-70 activity. Thus, Nef impacts Lck in a unique way, triggering it to mis-phosphorylate its substrates.

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来源期刊
CiteScore
3.70
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