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爱泼斯坦-巴尔病毒利用一种独特的激活途径来转化人类B细胞。

EBV utilizes a unique activation pathway for the transformation of human B cells.

作者信息

Dosch H M, Lam P, Hui M F, Hibi T, Cheung R K

机构信息

Hospital for Sick Children, Research Institute, Toronto, Ontario, Canada.

出版信息

Int Immunol. 1990;2(9):833-48. doi: 10.1093/intimm/2.9.833.

Abstract

EBV growth-transforms primate B lymphocytes and directly causes mono/multiclonal B cell lymphomas in vulnerable hosts. In this report we demonstrate that the degree of B cell transformability is not quantitatively determined at the level of either the saturable, transformation-prerequisite virus receptors or of the actual viral cell entry process. Instead, post-receptor binding events [Na+/H+ exchange, Ca2+ flux, tyrosine phosphorylation of two proteins (55-60/130-140 kd)] were identified as critical determinants of transformability. The presence of competent virus in transformable cells was per se insufficient for transformation: blockade of Ca2+ fluxes (or the antiport) generates virus-loaded cells that express viral genes but remain untransformed. Delayed induction by ionomycin of appropriately sized Ca2+ fluxes ([Ca2+]i greater than 180 less than 400 nM) re-starts transformation processes in EGTA-blocked, virus-loaded cells, perhaps providing a model for the study of virus re-activation. Overall, EBV induces unique cellular activation events different from non-oncogenic lymphocyte mitogens/activators, and, given the oncogenic potential of transformed cells in susceptible hosts, we hypothesize that these events describe a novel oncogenic transformation pathway.

摘要

EB病毒可使灵长类B淋巴细胞发生生长转化,并在易感宿主中直接引发单克隆/多克隆B细胞淋巴瘤。在本报告中,我们证明B细胞转化能力的程度并非由饱和的、转化所需的病毒受体水平或实际的病毒细胞进入过程定量决定。相反,受体结合后的事件[Na+/H+交换、Ca2+通量、两种蛋白质(55 - 60/130 - 140 kd)的酪氨酸磷酸化]被确定为转化能力的关键决定因素。可转化细胞中存在有活性的病毒本身并不足以实现转化:Ca2+通量(或反向转运体)的阻断会产生表达病毒基因但仍未转化的载有病毒的细胞。离子霉素对适当大小的Ca2+通量([Ca2+]i大于180小于400 nM)的延迟诱导会重新启动EGTA阻断的、载有病毒的细胞中的转化过程,这可能为病毒重新激活的研究提供一个模型。总体而言,EB病毒诱导独特的细胞激活事件,不同于非致癌性淋巴细胞有丝分裂原/激活剂,并且鉴于转化细胞在易感宿主中的致癌潜力,我们假设这些事件描述了一种新的致癌转化途径。

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