Liu C, Okruzhnov Y, Li H, Nicholas J
Molecular Virology Laboratories, Johns Hopkins Oncology Center, Baltimore, Maryland 21231, USA.
J Virol. 2001 Nov;75(22):10933-40. doi: 10.1128/JVI.75.22.10933-10940.2001.
The potential roles of human herpesvirus 8 (HHV-8) cytokines in HHV-8 pathogenesis were investigated by determining the expression of the HHV-8 chemokines viral macrophage inflammatory protein 1A (vMIP-1A) and vMIP-1B in primary effusion lymphoma (PEL)-derived cell lines and examining the signaling activities of these chemokines and HHV-8-encoded vIL-6 in these cells. Secreted vMIP-1A and vMIP-1B were detected in biologically significant concentrations following tetradecanoyl phorbol acetate treatment, which induces productive replication. vIL-6 and vMIP-1A, added exogenously to cultures of four different PEL cell lines, induced the expression of vascular endothelial growth factor type B (VEGF-B) and VEGF-A, respectively. These cells were found to express VEGF receptor 1 (Flt-1) protein, and signaling by recombinant VEGF-A(165) was demonstrated for two of the PEL cell lines, indicating the potential for autocrine, as well as paracrine, effects of viral cytokine-induced VEGF. In addition, vMIP-1A and vMIP-1B, but not VEGF-A(165), were found to inhibit chemically induced apoptosis in PEL cells. Our data suggest that vIL-6 and vMIP-1A may influence PEL through VEGF autocrine and paracrine signaling that promotes PEL cell growth and extravascular effusion and that vMIP-1A and vMIP-1B can act independently of VEGF as antiapoptotic factors.
通过测定原发性渗出性淋巴瘤(PEL)来源的细胞系中人类疱疹病毒8(HHV - 8)趋化因子病毒巨噬细胞炎性蛋白1A(vMIP - 1A)和vMIP - 1B的表达,并检测这些趋化因子和HHV - 8编码的vIL - 6在这些细胞中的信号传导活性,研究了HHV - 8细胞因子在HHV - 8发病机制中的潜在作用。在十四烷酰佛波醇乙酸酯处理诱导有效复制后,检测到分泌的vMIP - 1A和vMIP - 1B具有生物学显著浓度。将vIL - 6和vMIP - 1A分别外源性添加到四种不同的PEL细胞系培养物中,可分别诱导B型血管内皮生长因子(VEGF - B)和VEGF - A的表达。发现这些细胞表达VEGF受体1(Flt - 1)蛋白,并且在两种PEL细胞系中证明了重组VEGF - A(165)的信号传导,这表明病毒细胞因子诱导的VEGF具有自分泌以及旁分泌作用的潜力。此外,发现vMIP - 1A和vMIP - 1B而非VEGF - A(165)可抑制PEL细胞中的化学诱导凋亡。我们的数据表明,vIL - 6和vMIP - 1A可能通过促进PEL细胞生长和血管外渗出的VEGF自分泌和旁分泌信号传导影响PEL,并且vMIP - 1A和vMIP - 1B可以作为抗凋亡因子独立于VEGF发挥作用。