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细胞激活信号与人巨细胞病毒的发病机制

Cell activation signals and the pathogenesis of human cytomegalovirus.

作者信息

Albrecht T, Boldogh I, Fons M, AbuBakar S, Deng C Z

机构信息

Department of Microbiology, University of Texas Medical Branch, Galveston 77550.

出版信息

Intervirology. 1990;31(2-4):68-75. doi: 10.1159/000150140.

Abstract

Cytomegalovirus (CMV) infection induces a series of cellular responses that resemble those observed in cells activated by growth factors or hormones including: hydrolysis of phosphatidylinositol-4,5-bisphosphate; Ca2+ influx and an increase in the cytosolic free [Ca2+]; an increase in Na+ entry; and, increases in cellular levels of cyclic AMP and cyclic GMP. The time courses for some of these responses appear to be markedly protracted relative to those observed for growth factors. The prolonged physiologic responses in CMV-infected cells appear to be related to modifications in the intracellular environment that are associated with the development of cytomegaly and with the phasing of CMV-directed macromolecular synthesis. For example, as the infected cell enlarges, the rate of CMV DNA synthesis increases by about 4-fold, late nuclear inclusions develop and progeny viruses are formed. When the CMV-induced activation signals are inhibited or their physiologic responses are blocked, then the yields of infectious CMV are substantially reduced. Furthermore, perturbation of the cell cycle resulting from induction of the cell activation process by CMV may be causally related to the induction of cellular damage by CMV, even in the absence of productive infection. Accordingly, the CMV-induced pathophysiologic cell activation responses represent potential targets for novel antiviral therapy.

摘要

巨细胞病毒(CMV)感染会引发一系列细胞反应,这些反应类似于在由生长因子或激素激活的细胞中观察到的反应,包括:磷脂酰肌醇-4,5-二磷酸的水解;Ca2+内流以及胞质游离[Ca2+]的增加;Na+进入增加;以及细胞内环磷酸腺苷(cAMP)和环磷酸鸟苷(cGMP)水平的升高。相对于生长因子所观察到的反应,其中一些反应的时间进程似乎明显延长。CMV感染细胞中延长的生理反应似乎与细胞内环境的改变有关,这些改变与细胞肿大的发展以及CMV指导的大分子合成的阶段有关。例如,随着感染细胞的增大,CMV DNA合成速率增加约4倍,晚期核内包涵体形成,子代病毒产生。当CMV诱导的激活信号被抑制或其生理反应被阻断时,感染性CMV的产量会大幅降低。此外,即使在没有生产性感染的情况下,由CMV诱导细胞激活过程导致的细胞周期扰动可能与CMV诱导的细胞损伤有因果关系。因此,CMV诱导的病理生理细胞激活反应代表了新型抗病毒治疗的潜在靶点。

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