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核因子-κB依赖的核因子-κB p50亚基基因启动子的诱导是单核细胞中人免疫缺陷病毒转录自我持续存在的基础。

NF-kappa B-dependent induction of the NF-kappa B p50 subunit gene promoter underlies self-perpetuation of human immunodeficiency virus transcription in monocytic cells.

作者信息

Paya C V, Ten R M, Bessia C, Alcami J, Hay R T, Virelizier J L

机构信息

Unite d'Immunologie Virale, Institut Pasteur, Paris, France.

出版信息

Proc Natl Acad Sci U S A. 1992 Aug 15;89(16):7826-30. doi: 10.1073/pnas.89.16.7826.

Abstract

The molecular mechanisms underlying the sustained nuclear translocation of NF-kappa B observed in U937 monocytic cells chronically infected with human immunodeficiency virus (HIV) were studied. The activity of the promoter regulating the synthesis of the p105 precursor of the NF-kappa B p50 subunit was enhanced in these cells. Deletions in this promoter indicated that this upregulation was mediated through the NF-kappa B- but not the AP-1-binding motif, by bona fide p50/p65 heterodimers. Analysis of cytosolic extracts indicated that NF-kappa B levels were increased in HIV-infected cells. In contrast to the transient NF-kappa B activation induced by phorbol ester, the permanent NF-kappa B translocation induced by HIV infection was not dependent on PKC isoenzymes alpha and beta as shown by the use of a specific inhibitor (GF 109203X). These observations indicate that during chronic HIV infection of U937 cells, continuous NF-kappa B (p50/p65) translocation results in p105 promoter upregulation with subsequent cytosolic NF-kappa B accumulation, ready for further translocation. This HIV-mediated mechanism results in a self-perpetuating loop of NF-kappa B production.

摘要

研究了在慢性感染人类免疫缺陷病毒(HIV)的U937单核细胞中观察到的NF-κB持续核转位的分子机制。在这些细胞中,调节NF-κB p50亚基p105前体合成的启动子活性增强。该启动子的缺失表明,这种上调是由真正的p50/p65异二聚体通过NF-κB而非AP-1结合基序介导的。对胞质提取物的分析表明,HIV感染细胞中NF-κB水平升高。与佛波酯诱导的短暂NF-κB激活相反,HIV感染诱导的永久性NF-κB转位不依赖于PKC同工酶α和β,这一点通过使用特异性抑制剂(GF 109203X)得以证明。这些观察结果表明,在U937细胞慢性HIV感染期间,持续的NF-κB(p50/p65)转位导致p105启动子上调,随后胞质NF-κB积累,为进一步转位做好准备。这种HIV介导的机制导致了NF-κB产生的自我延续循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/275f/49804/01c50e18d3ed/pnas01090-0550-a.jpg

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