Banda N K, Tomczak J A, Shpall E J, Sipple J, Akkina R K, Steimer K S, Hami L, Curiel T J, Singer Harrison G
Department of Medicine, University of Colorado Health Sciences Center, Denver 80262, USA.
Apoptosis. 1997;2(1):61-8. doi: 10.1023/a:1026439726053.
Haematologic abnormalities accompany the majority of HIV-1 infections. At present it is unclear whether this is due directly to HIV infection of hematopoietic progenitor cells, or whether this results from an indirect mechanism secondary to HIV infection. Here we provide evidence for an indirect mechanism, whereby hematopoietic progenitor cells undergo HIV gp120-induced apoptosis (programmed cell death) even in the absence of HIV infection. Freshly isolated, purified human hematopoietic progenitor CD34+ cells, derived from both umbilical cord blood and bone marrow, co-expressed the CD4 marker at low density on their surface. Although these CD34+CD4+ cells theoretically should be capable of productive infection by HIV, we found that HIV-IIIB could not establish productive infection in these cells. Nonetheless, gp120 from IIIB could bind the cells. Thus, binding of gp120 did not correlate with infectivity. Furthermore, binding of gp120 was a specific event, leading to apoptosis upon crosslinking with anti-gp120 through a fas-dependent mechanism. If apoptosis is also observed in vivo even in uninfected hematopoietic cells, this could contribute significantly to the impairment in hematopoietic cell number and function. Our data suggest a novel indirect mechanism for depletion of CD34+ and CD34+-derived cells even in the absence of productive viral infection of these cells.
大多数HIV-1感染都伴有血液学异常。目前尚不清楚这是直接由于造血祖细胞感染HIV,还是继发于HIV感染的间接机制所致。在此,我们提供了一种间接机制的证据,即即使在没有HIV感染的情况下,造血祖细胞也会发生HIV gp120诱导的凋亡(程序性细胞死亡)。从脐带血和骨髓中分离出的新鲜纯化的人类造血祖细胞CD34+细胞,其表面低密度共表达CD4标志物。虽然理论上这些CD34+CD4+细胞应该能够被HIV有效感染,但我们发现HIV-IIIB无法在这些细胞中建立有效感染。尽管如此,来自IIIB的gp120可以与这些细胞结合。因此,gp120的结合与感染性无关。此外,gp120的结合是一个特异性事件,通过fas依赖机制与抗gp120交联后会导致细胞凋亡。如果在体内即使未感染的造血细胞中也观察到凋亡,这可能会显著导致造血细胞数量和功能的受损。我们的数据表明,即使在这些细胞没有发生有效病毒感染的情况下,也存在一种新的间接机制导致CD34+细胞和源自CD34+的细胞耗竭。