Kolchinsky P, Kiprilov E, Bartley P, Rubinstein R, Sodroski J
Department of Cancer Immunology and AIDS, Dana-Farber Cancer Institute, and Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Virol. 2001 Apr;75(7):3435-43. doi: 10.1128/JVI.75.7.3435-3443.2001.
The gp120 envelope glycoprotein of primary human immunodeficiency virus type 1 (HIV-1) promotes virus entry by sequentially binding CD4 and the CCR5 chemokine receptor on the target cell. Previously, we adapted a primary HIV-1 isolate, ADA, to replicate in CD4-negative canine cells expressing human CCR5. The gp120 changes responsible for CD4-independent replication were limited to the V2 loop-V1/V2 stem. Here we show that elimination of a single glycosylation site at asparagine 197 in the V1/V2 stem is sufficient for CD4-independent gp120 binding to CCR5 and for HIV-1 entry into CD4-negative cells expressing CCR5. Deletion of the V1/V2 loops also allowed CD4-independent viral entry and gp120 binding to CCR5. The binding of the wild-type ADA gp120 to CCR5 was less dependent upon CD4 at 4 degrees C than at 37 degrees C. In the absence of the V1/V2 loops, neither removal of the N-linked carbohydrate at asparagine 197 nor lowering of the temperature increased the CD4-independent phenotypes. A CCR5-binding conformation of gp120, achieved by CD4 interaction or by modification of temperature, glycosylation, or variable loops, was preferentially recognized by the monoclonal antibody 48d. These results suggest that the CCR5-binding region of gp120 is occluded by the V1/V2 variable loops, the position of which can be modulated by temperature, CD4 binding, or an N-linked glycan in the V1/V2 stem.
原发性人类免疫缺陷病毒1型(HIV-1)的包膜糖蛋白gp120通过依次结合靶细胞上的CD4和CCR5趋化因子受体来促进病毒进入。此前,我们对一株原发性HIV-1分离株ADA进行了改造,使其能在表达人CCR5的CD4阴性犬类细胞中复制。负责不依赖CD4复制的gp120变化仅限于V2环-V1/V2茎区。在此我们表明,去除V1/V2茎区天冬酰胺197处的单个糖基化位点足以使gp120不依赖CD4结合CCR5,并使HIV-1进入表达CCR5的CD4阴性细胞。删除V1/V2环也能实现不依赖CD4的病毒进入以及gp120与CCR5的结合。野生型ADA gp120在4℃时与CCR5的结合比在37℃时对CD4的依赖性更低。在没有V1/V2环的情况下,去除天冬酰胺197处的N-连接碳水化合物或降低温度都不会增加不依赖CD4的表型。通过CD4相互作用或通过改变温度、糖基化或可变环实现的gp120的CCR5结合构象,优先被单克隆抗体48d识别。这些结果表明,gp120的CCR5结合区域被V1/V2可变环封闭,其位置可通过温度、CD4结合或V1/V2茎区的N-连接聚糖进行调节。