Lenburg M E, Landau N R
Aaron Diamond AIDS Research Center, New York, New York.
J Virol. 1993 Dec;67(12):7238-45. doi: 10.1128/JVI.67.12.7238-7245.1993.
Two functions have been attributed to the product of the human immunodeficiency virus type 1 vpu open reading frame: it increases virion release from infected cells and induces rapid degradation of CD4 shortly after its synthesis. In the absence of Vpu, newly synthesized gp160 and CD4 associate in the endoplasmic reticulum (ER), forming a complex whose further maturation is blocked and which is eventually degraded. In studies using NL4-3-based expression vectors, it has been previously shown that Vpu induces the release of gp160 from the complex that it forms with CD4 in the ER. This release, which appears to be due to the rapid degradation of CD4 induced by Vpu, allows gp160 to transit to the Golgi, where it matures further. We investigated which regions of CD4 are important for its susceptibility to Vpu-induced degradation by transfecting HeLa cells with isogenic vpu-positive and vpu-negative proviruses and vectors expressing various truncated or mutated CD4 molecules. The results suggested that the cytoplasmic domain of CD4 contains a determinant lying within amino acids 418 to 425 that is critical for susceptibility to Vpu-induced degradation. Neither the phosphorylation sites in the cytoplasmic domain nor the Lck interaction region was required for the effect. Vpu-induced degradation was specific for CD4, since CD8, even when retained in the ER, was not degraded. In addition, under conditions of high-level Vpu expression, CD4 degradation could be observed in the absence of gp160 or other means of retaining CD4 in the ER.
人类免疫缺陷病毒1型(HIV-1)vpu开放阅读框的产物具有两种功能:它可增加病毒体从感染细胞的释放,并在合成后不久诱导CD4的快速降解。在没有Vpu的情况下,新合成的gp160和CD4在内质网(ER)中结合,形成一种复合物,其进一步成熟被阻断,最终被降解。在使用基于NL4-3的表达载体的研究中,先前已表明Vpu可诱导gp160从其在内质网中与CD4形成的复合物中释放。这种释放似乎是由于Vpu诱导的CD4快速降解所致,它使gp160能够转运至高尔基体,在那里进一步成熟。我们通过用同基因的vpu阳性和vpu阴性前病毒以及表达各种截短或突变CD4分子的载体转染HeLa细胞,研究了CD4的哪些区域对其对Vpu诱导降解的敏感性很重要。结果表明,CD4的胞质结构域含有一个位于氨基酸418至425之间的决定簇,这对于对Vpu诱导降解的敏感性至关重要。该效应既不需要胞质结构域中的磷酸化位点,也不需要Lck相互作用区域。Vpu诱导的降解对CD4具有特异性,因为即使CD8保留在内质网中也不会被降解。此外,在高水平Vpu表达的条件下,在没有gp160或其他将CD4保留在内质网中的方式的情况下,也可以观察到CD4的降解。