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前列腺素A对病毒复制的抑制作用与热休克蛋白的合成有关。

Suppression of virus replication by prostaglandin A is associated with heat shock protein synthesis.

作者信息

Amici C, Santoro M G

机构信息

Department of Experimental Medicine and Biochemical Sciences, University of Rome, Italy.

出版信息

J Gen Virol. 1991 Aug;72 ( Pt 8):1877-85. doi: 10.1099/0022-1317-72-8-1877.

Abstract

The antiviral action of cyclopentenone prostaglandins (PGs) is generally associated with alterations in the synthesis and/or maturation of specific virus proteins. In particular, inhibition of Sendai virus (SV) replication in African green monkey kidney cells by PGA1 has been shown to be a cell-mediated event, due to alterations in SV protein glycosylation and accompanied by the induction of a cellular polypeptide of Mr 74K. In this report we identify this protein as a heat shock protein (HSP) related to the major 70K HSP group (HSP70). Induction of HSP70 synthesis by PGA1 was found to be dose-dependent, and an accumulation of HSP70 comparable to that occurring after heat shock could be obtained at concentrations of PGA1 that did not inhibit macromolecular synthesis in uninfected cells, but caused a dramatic block of virus replication in SV-infected cells. Induction of HSP70 by PGA1 occurred at the transcriptional level and was not affected by SV infection. HSP70 synthesis was evident between 2 and 3 h after PGA1 treatment, maximal at 12 h and went back to control levels by 26 h after the addition of PGA1, thus preceding virus protein synthesis. Finally, of several PGs tested, only those which possess antiviral activity induced the synthesis of HSP70. These results, together with the observation that suppression of HSP70 synthesis by actinomycin D also abolishes the PGA1-induced alteration of SV glycoproteins, suggest that HSP70 could play a role in the block of virus replication by cyclopentenone PGs.

摘要

环戊烯酮前列腺素(PGs)的抗病毒作用通常与特定病毒蛋白的合成和/或成熟改变有关。特别是,已证明PGA1对非洲绿猴肾细胞中仙台病毒(SV)复制的抑制是一种细胞介导的事件,这是由于SV蛋白糖基化的改变,并伴随着一种74K道尔顿细胞多肽的诱导。在本报告中,我们将这种蛋白鉴定为与主要的70K热休克蛋白(HSP)家族(HSP70)相关的热休克蛋白。发现PGA1诱导HSP70合成具有剂量依赖性,在不抑制未感染细胞中大分子合成,但能显著阻断SV感染细胞中病毒复制的PGA1浓度下,可获得与热休克后相当的HSP70积累。PGA1诱导HSP70在转录水平发生,且不受SV感染影响。HSP70合成在PGA1处理后2至3小时明显,12小时达到最大值,并在添加PGA1后26小时恢复到对照水平,因此先于病毒蛋白合成。最后,在测试的几种PGs中,只有那些具有抗病毒活性的PGs能诱导HSP70的合成。这些结果,连同放线菌素D抑制HSP70合成也消除了PGA1诱导的SV糖蛋白改变这一观察结果,表明HSP70可能在环戊烯酮PGs阻断病毒复制中起作用。

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