Quackenbush S L, Mullins J I, Hoover E A
Department of Pathology, Colorado State University, Fort Collins, CO 80523-1671, USA.
J Gen Virol. 1996 Jul;77 ( Pt 7):1411-20. doi: 10.1099/0022-1317-77-7-1411.
To elucidate in vivo cell tropism and infection kinetics of an immunodeficiency-inducing isolate of feline leukaemia virus (FeLV-FAIDS), we quantified the two major genotypes comprising FeLV-FAIDS [the replication-competent common form (clone 61E) and the replication-defective variant (clone 61C)] in lymphocyte and leukocyte populations from infected cats. Micromagnetic separation of cell subsets, virus genome-specific PCR and flow cytometry were used to demonstrate the following sequence of events in infected animals: (i) very early replication of both 61E and 61C in CD4 T cells (provirus burden 0.2 to 1 copy/cell at 2-4 weeks post-infection); (ii) lower magnitude replication of both viruses in CD8 T cells and B cells during this initial phase of infection; (iii) plateauing of CD4 cell virus burden accompanied by escalation in CD8 and B cell provirus burdens after 4 weeks; (iv) extensive infection of haemopoietic and circulating myeloid cells. FeLV-FAIDS 61E and 61C replication kinetics and lymphocyte tropisms were similar in blood and lymph nodes, where provirus burdens ranged from 0.15 to 1.0 copy/cell. Moreover, virus infection was productive; 8-48 percent of blood lymphocytes, 35-81 percent of node lymphocytes and 53-98 percent of bone marrow cells expressed FeLV capsid antigen (p27 Gag). These findings suggest that the immunosuppressive potency of FeLV-FAIDS reflects the unique cytopathicity rather than unique cytotropism of its 61C (versus 61E) component.
为阐明致免疫缺陷型猫白血病病毒(FeLV-FAIDS)分离株的体内细胞嗜性和感染动力学,我们对感染猫的淋巴细胞和白细胞群体中构成FeLV-FAIDS的两种主要基因型[复制能力正常的常见形式(克隆61E)和复制缺陷型变体(克隆61C)]进行了定量分析。利用细胞亚群的微磁分离、病毒基因组特异性PCR和流式细胞术,在感染动物中证实了以下事件顺序:(i)61E和61C在CD4 T细胞中非常早期的复制(感染后2-4周原病毒负荷为0.2至1拷贝/细胞);(ii)在感染的初始阶段,两种病毒在CD8 T细胞和B细胞中的复制量较低;(iii)4周后,CD4细胞病毒负荷达到平稳状态,同时CD8和B细胞原病毒负荷增加;(iv)造血细胞和循环髓样细胞广泛感染。FeLV-FAIDS 61E和61C在血液和淋巴结中的复制动力学及淋巴细胞嗜性相似,原病毒负荷范围为0.15至1.0拷贝/细胞。此外,病毒感染具有增殖性;8%-48%的血液淋巴细胞、35%-81%的淋巴结淋巴细胞和53%-98%的骨髓细胞表达FeLV衣壳抗原(p27 Gag)。这些发现表明,FeLV-FAIDS的免疫抑制效力反映了其61C(相对于61E)组分独特的细胞病变效应,而非独特的细胞嗜性。