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甲型流感病毒对人中性粒细胞钙代谢的影响。

Effects of influenza A virus on human neutrophil calcium metabolism.

作者信息

Hartshorn K L, Collamer M, Auerbach M, Myers J B, Pavlotsky N, Tauber A I

机构信息

William B. Castle Hematology Laboratory, Boston City Hospital, MA 02118.

出版信息

J Immunol. 1988 Aug 15;141(4):1295-301.

PMID:3135328
Abstract

Bacterial superinfection in influenza A virus-related illness may in part be explained by virus-induced neutrophil dysfunction. We here provide evidence that this effect is related to abnormal calcium metabolism of virus-infected cells. Neutrophils exposed to influenza virus for 0.5 h at 37 degrees C showed depressed O2- generation and release of radiolabeled arachidonic acid upon stimulation with FMLP. The peak cytosolic Ca2+ level achieved by virus-infected neutrophils after FMLP stimulation was significantly depressed as is efflux of 45Ca2+. This deficient Ca2+ mobilization could not be attributed to alterations of inositol phosphate production or Ca2+ influx in response to FMLP, both of which were unaffected by prior virus infection. Given these findings, the immediate effects of influenza virus on neutrophil Ca2+ metabolism were examined. The virus itself caused a rise in cytosolic Ca2+ and an efflux of 45Ca2+ without any corresponding 45Ca2+ influx. Total cell Ca2+ however was not depleted as measured by atomic absorption. Influenza virus, therefore, causes neutrophil activation leading to significant perturbations in Ca2+ metabolism and later to impaired mobilization of Ca2+ stores. This system offers a model for phagocyte deactivation and an opportunity to define control mechanisms of signal transduction.

摘要

甲型流感病毒相关疾病中的细菌重叠感染,部分原因可能是病毒诱导的中性粒细胞功能障碍。我们在此提供证据表明,这种效应与病毒感染细胞的钙代谢异常有关。在37摄氏度下,中性粒细胞与流感病毒接触0.5小时后,经FMLP刺激,其O2-生成和放射性标记花生四烯酸的释放均受到抑制。FMLP刺激后,病毒感染的中性粒细胞达到的胞浆Ca2+峰值水平显著降低,45Ca2+外流情况也是如此。这种Ca2+动员不足不能归因于肌醇磷酸生成或对FMLP反应的Ca2+内流的改变,这两者均不受先前病毒感染的影响。基于这些发现,我们研究了流感病毒对中性粒细胞钙代谢的即时效应。病毒本身导致胞浆Ca2+升高和45Ca2+外流,且没有任何相应的45Ca2+内流。然而,通过原子吸收测量发现,细胞总钙并未耗尽。因此,流感病毒会导致中性粒细胞活化,从而导致钙代谢显著紊乱,随后导致钙储存动员受损。该系统为吞噬细胞失活提供了一个模型,并为定义信号转导的控制机制提供了契机。

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