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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Role of the p38 and MEK-1/2/p42/44 MAP kinase pathways in the differential activation of human immunodeficiency virus gene expression by ultraviolet and ionizing radiation
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Role of the p38 and MEK-1/2/p42/44 MAP kinase pathways in the differential activation of human immunodeficiency virus gene expression by ultraviolet and ionizing radiation

机译:p38和MEK-1 / 2 / p42 / 44 MAP激酶途径在紫外线和电离辐射差异激活人类免疫缺陷病毒基因表达中的作用

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摘要

Ultraviolet (UV) radiation is a potent activator of human immunodeficiency virus (HIV) gene expression in a HeLa cell clone having stably integrated copies of an HIVcat (cat gene under control of the HIV promoter) reporter construct, whereas ionizing radiation is ineffective. UV-activated HIV gene expression is completely blocked by the specific p38 mitogen-activated protein (MAP) kinase inhibitor SB203580 and by expression of a kinase-inactive p38 mutant that interferes with normal p38 function, suggesting that this stress-activated protein kinase plays an important role in UV-mediated transcriptional activation of HIV. In support of these findings, we show here that Western blot analysis demonstrated rapid and significant activation of p38 MAP kinase by UV, On the other hand, gamma-radiation activated p38 MAP kinase very poorly in HeLa cells at both low and high doses at times (5-30 min) when UV radiation was effective, UV radiation also activated HIV gene expression (less than or equal to 9-fold) in 1G5 Jurkat T-cells stably transfected with a luciferase reporter gene under control of the HIV promoter. In these cells, gamma-radiation stimulated HIV gene expression but to a lesser extent (less than or equal to 3-fold) and with different kinetics than after UV radiation, and this response was obliterated by the incubation of cells with the mitogen-activated protein kinase/Erk kinase (MEK)-1/2 inhibitor PD98059, This result suggests that in these cells signaling in response to gamma-radiation is transduced through the MEK-1/2/p42/44 MAP kinase pathway to increase HIV gene expression. All combined, these results suggest that activation of p38 MAP kinase is necessary for efficient HIV gene expression triggered by DNA damaging agents, and, in a cell type-specific manner, activation of the MEK-1/2/p42/44 MAP kinase pathway is important for triggering a response to gamma-radiation. Thus, it appears as if UV signaling leading to HIV gene expression requires the p38 MAP kinase pathway whereas activation by gamma-radiation requires the MEK-1/2/p42/44 MAP kinase pathway. [References: 29]
机译:紫外线(UV)辐射是HeLa细胞克隆中人类免疫缺陷病毒(HIV)基因表达的有效激活剂,该克隆具有稳定整合的HIVcat(在HIV启动子控制下的cat基因)报告基因构建体拷贝,而电离辐射无效。紫外线激活的HIV基因表达被特定的p38丝裂原激活蛋白(MAP)激酶抑制剂SB203580以及激酶失活的p38突变体的表达完全阻断,该突变体会干扰正常的p38功能,这表明这种应激激活的蛋白激酶起着在紫外线介导的HIV转录激活中起重要作用。为了支持这些发现,我们在这里表明Western印迹分析证明了UV对p38 MAP激酶的快速且显着的激活。另一方面,γ射线在低剂量和高剂量下的HeLa细胞中对p38 MAP激酶的激活非常差。 (5-30分钟)当紫外线辐射有效时,紫外线辐射还激活了在荧光素酶报告基因控制下稳定转染的1G5 Jurkat T细胞中HIV基因表达(小于或等于9倍)。在这些细胞中,伽马射线辐射刺激了HIV基因的表达,但程度较小(小于或等于3倍),并且动力学特性与紫外线辐射后不同,并且通过将细胞与促分裂原激活后孵育,这种反应得以消除。蛋白激酶/ Erk激酶(MEK)-1/2抑制剂PD98059,该结果表明,在这些细胞中,响应于γ射线的信号转导通过MEK-1 / 2 / p42 / 44 MAP激酶途径来增加HIV基因表达。所有这些结果综合表明,p38 MAP激酶的激活对于DNA破坏剂触发的有效HIV基因表达是必需的,并且以细胞类型特异性方式激活MEK-1 / 2 / p42 / 44 MAP激酶途径对于触发对伽马辐射的响应很重要。因此,似乎导致HIV基因表达的UV信号传导需要p38 MAP激酶途径,而通过γ辐射激活需要MEK-1 / 2 / p42 / 44 MAP激酶途径。 [参考:29]

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