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HIV-1 抑制因子人甘露糖受体 1 的转录调控由髓系特异性转录因子 PU.1 完成。

Transcriptional regulation of the HIV-1 inhibitory factor human mannose receptor 1 by the myeloid-specific transcription factor PU.1.

机构信息

Viral Biochemistry Section, Laboratory of Molecular Microbiology, NIAID, NIH, Bethesda, Maryland, USA.

Department of Molecular Virology, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU), Tokyo, Japan.

出版信息

J Virol. 2024 Jan 23;98(1):e0170223. doi: 10.1128/jvi.01702-23. Epub 2023 Dec 11.

Abstract

HIV-1 infection of human macrophages leads to the downmodulation of human mannose receptor 1 (hMRC1), a cell-surface glycoprotein that is involved in the host innate immune response. We previously reported that downmodulation of hMRC1 involves the transactivator of transcription (Tat)-dependent transcriptional silencing of the hMRC1 promoter. However, the inhibitory effect of Tat on hMRC1 transcription was indirect and involved inhibition of the transcriptional activator PU.1, which normally upregulates hMRC1 expression in macrophages and other myeloid cells. We cloned a 284-bp fragment of the hMRC1 promoter, and within it, we identified four PU.1 box elements. We assessed the relative contribution of each of the four PU.1 boxes to PU.1-dependent transcriptional regulation and, surprisingly, found that only one of the four PU.1 boxes [PU.1(b)] was critically required for PU.1-mediated upregulation of luciferase expression. Transfer of this PU.1 box to a heterologous promoter conferred PU.1 responsiveness to an otherwise PU.1 insensitive promoter. Electrophoretic mobility shift assays identified this PU.1 box as a direct binding site for PU.1 both in the context of the hMRC1 promoter and the heterologous promoter. Furthermore, mutational analysis of the PU.1 protein identified the C-terminal DNA-binding domain in PU.1 as the region responsible for interaction with the PU.1 box. Recombinant HIV-1 Tat protein did not bind to the hMRC1 promoter element but efficiently interfered with the binding of PU.1 protein to the hMRC1 promoter. Thus, Tat is likely to inhibit the formation of active PU.1 transcription complexes, presumably by binding to and depleting common transcriptional cofactors.IMPORTANCEHIV-1 infection of cells results in the modulation of cellular gene expression by virus-encoded proteins in a manner that benefits the virus. We reported that HIV-1 transactivator of transcription (Tat) dysregulates the expression of the human mannose receptor 1 (hMRC1). hMRC1 is involved in the innate immune response of macrophages to foreign pathogens. Tat does not act directly on the hMRC1 promoter but instead inhibits PU.1, a cellular transcription factor regulating hMRC1 gene expression. Here, we characterize the PU.1-dependent regulation of hMRC1 expression. We identified four potential PU.1 binding sites in the hMRC1 promoter region but found that only one, PU.1(b), functioned as a true binding site for PU.1. Transfer of the PU.1(b) box to a heterologous promoter did not activate this promoter but rendered it responsive to PU.1. Our results support the view that PU.1 acts as a transcriptional co-factor whose activity can be regulated by HIV-1 Tat.

摘要

HIV-1 感染人巨噬细胞会导致人类甘露糖受体 1(hMRC1)的下调,hMRC1 是一种参与宿主固有免疫反应的细胞表面糖蛋白。我们之前报道过,hMRC1 的下调涉及转录激活剂(Tat)依赖性 hMRC1 启动子转录沉默。然而,Tat 对 hMRC1 转录的抑制作用是间接的,涉及抑制转录激活子 PU.1,PU.1 通常在上皮细胞和其他髓样细胞中上调 hMRC1 的表达。我们克隆了 hMRC1 启动子的 284 个碱基对片段,在其中我们鉴定了四个 PU.1 盒元件。我们评估了四个 PU.1 盒中每一个对 PU.1 依赖性转录调控的相对贡献,令人惊讶的是,我们发现只有四个 PU.1 盒中的一个[PU.1(b)]对于 PU.1 介导的荧光素酶表达的上调是至关重要的。将这个 PU.1 盒转移到一个异源启动子上,赋予了这个启动子对 PU.1 的反应性,而这个启动子原本对 PU.1 不敏感。电泳迁移率变动分析鉴定出这个 PU.1 盒是在 hMRC1 启动子和异源启动子的背景下,PU.1 的直接结合位点。此外,对 PU.1 蛋白的突变分析确定了 PU.1 蛋白的 C 端 DNA 结合域负责与 PU.1 盒相互作用。重组 HIV-1 Tat 蛋白不与 hMRC1 启动子元件结合,但能有效地干扰 PU.1 蛋白与 hMRC1 启动子的结合。因此,Tat 可能通过与常见转录共因子结合并耗尽这些共因子来抑制活性 PU.1 转录复合物的形成。

HIV-1 感染细胞会导致病毒编码蛋白以有利于病毒的方式调节细胞基因表达。我们报告说,HIV-1 转录激活剂(Tat)会使人类甘露糖受体 1(hMRC1)的表达失调。hMRC1 参与巨噬细胞对外来病原体的固有免疫反应。Tat 并不直接作用于 hMRC1 启动子,而是抑制 PU.1,一种调节 hMRC1 基因表达的细胞转录因子。在这里,我们描述了 hMRC1 表达的 PU.1 依赖性调节。我们在 hMRC1 启动子区域鉴定了四个潜在的 PU.1 结合位点,但发现只有一个,PU.1(b),作为 PU.1 的真正结合位点发挥作用。将 PU.1(b) 盒转移到一个异源启动子上并没有激活这个启动子,但使它对 PU.1 有反应。我们的结果支持这样一种观点,即 PU.1 作为一种转录共因子发挥作用,其活性可以被 HIV-1 Tat 调节。

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