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靶向Crm1的突变型人核孔蛋白对人免疫缺陷病毒Rev和人T细胞白血病病毒Rex功能有抑制作用,但对梅森- Pfizer猴病毒组成型转运元件活性无抑制作用。

Inhibition of human immunodeficiency virus Rev and human T-cell leukemia virus Rex function, but not Mason-Pfizer monkey virus constitutive transport element activity, by a mutant human nucleoporin targeted to Crm1.

作者信息

Bogerd H P, Echarri A, Ross T M, Cullen B R

机构信息

Howard Hughes Medical Institute, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Virol. 1998 Nov;72(11):8627-35. doi: 10.1128/JVI.72.11.8627-8635.1998.

Abstract

The hypothesis that the cellular protein Crm1 mediates human immunodeficiency virus type 1 (HIV-1) Rev-dependent nuclear export posits that Crm1 can directly interact both with the Rev nuclear export signal (NES) and with cellular nucleoporins. Here, we demonstrate that Crm1 is indeed able to interact with active but not defective forms of the HIV-1 Rev NES and of NESs found in other retroviral nuclear export factors. In addition, we demonstrate that Crm1 can bind the Rev NES when Rev is assembled onto the Rev response element RNA target and that Crm1, like Rev, is a nucleocytoplasmic shuttle protein. Crm1 also specifically binds the Rev NES in vitro, although this latter interaction is detectable only in the presence of added Ran . GTP. Overexpression of a truncated, defective form of the nucleoporin Nup214/CAN, termed DeltaCAN, that retains Crm1 binding ability resulted in the effective inhibition of HIV-1 Rev or human T-cell leukemia virus Rex-dependent gene expression. In contrast, DeltaCAN had no significant affect on Mason-Pfizer monkey virus constitutive transport element (MPMV CTE)-dependent nuclear RNA export or on the expression of RNAs dependent on the cellular mRNA export pathway. As a result, DeltaCAN specifically blocked late, but not early, HIV-1 gene expression in HIV-1-infected cells. These data strongly validate Crm1 as a cellular cofactor for HIV-1 Rev and demonstrate that the MPMV CTE nuclear RNA export pathway uses a distinct, Crm1-independent mechanism. In addition, these data identify a novel and highly potent inhibitor of leucine-rich NES-dependent nuclear export.

摘要

细胞蛋白Crm1介导1型人类免疫缺陷病毒(HIV-1)Rev依赖性核输出的假说认为,Crm1能够直接与Rev核输出信号(NES)以及细胞核孔蛋白相互作用。在此,我们证明Crm1确实能够与HIV-1 Rev NES的活性形式而非缺陷形式以及其他逆转录病毒核输出因子中的NES相互作用。此外,我们证明当Rev组装到Rev反应元件RNA靶标上时,Crm1能够结合Rev NES,并且Crm1与Rev一样,是一种核质穿梭蛋白。Crm1在体外也能特异性结合Rev NES,尽管只有在添加Ran.GTP的情况下才能检测到这种相互作用。核孔蛋白Nup214/CAN的截短缺陷形式(称为DeltaCAN)保留了Crm1结合能力,其过表达导致有效抑制HIV-1 Rev或人类T细胞白血病病毒Rex依赖性基因表达。相比之下,DeltaCAN对马森- Pfizer猴病毒组成型转运元件(MPMV CTE)依赖性核RNA输出或对依赖于细胞mRNA输出途径的RNA表达没有显著影响。因此,DeltaCAN特异性阻断了HIV-1感染细胞中HIV-1的晚期而非早期基因表达。这些数据有力地证实了Crm1是HIV-1 Rev的细胞辅助因子,并表明MPMV CTE核RNA输出途径使用一种独特的、不依赖Crm1的机制。此外,这些数据确定了一种新型且高效的富含亮氨酸NES依赖性核输出抑制剂。

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