Li L, Yoder K, Hansen M S, Olvera J, Miller M D, Bushman F D
Infectious Disease Laboratory, The Salk Institute, La Jolla, California 92037, USA.
J Virol. 2000 Dec;74(23):10965-74. doi: 10.1128/jvi.74.23.10965-10974.2000.
To replicate, a retrovirus must synthesize a cDNA copy of the viral RNA genome and integrate that cDNA into a chromosome of the host. We have investigated the role of a host cell cofactor, HMG I(Y) protein, in integration of human immunodeficiency virus type 1 (HIV-1) and Moloney murine leukemia virus (MoMLV) cDNA. Previously we reported that HMG I(Y) cofractionates with HIV-1 preintegration complexes (PICs) isolated from freshly infected cells. PICs depleted of required components by treatment with high concentrations of salt could be reconstituted by addition of purified HMG I(Y) in vitro. Here we report studies using immunoprecipitation that indicate that HMG I(Y) is associated with MoMLV preintegration complexes. In mechanistic studies, we show for both HIV-1 and MoMLV that each HMG I(Y) monomer must contain multiple DNA binding domains to stimulate integration by HMG I(Y)-depleted PICs. We also find that HMG I(Y) can condense model HIV-1 or MoMLV cDNA in vitro as measured by stimulation of intermolecular ligation. This reaction, like reconstitution of integration, depends on the presence of multiple DNA binding domains in each HMG I(Y) monomer. These data suggest that binding of multivalent HMG I(Y) monomers to multiple cDNA sites compacts retroviral cDNA, thereby promoting formation of active integrase-cDNA complexes.
逆转录病毒要进行复制,必须合成病毒RNA基因组的cDNA拷贝,并将该cDNA整合到宿主细胞的染色体中。我们研究了宿主细胞辅因子HMG I(Y)蛋白在1型人类免疫缺陷病毒(HIV-1)和莫洛尼鼠白血病病毒(MoMLV)cDNA整合过程中的作用。此前我们报道,HMG I(Y)与从新感染细胞中分离出的HIV-1整合前复合物(PICs)共分离。用高浓度盐处理使所需成分耗尽的PICs,可通过在体外添加纯化的HMG I(Y)进行重建。在此我们报道了利用免疫沉淀法进行的研究,结果表明HMG I(Y)与MoMLV整合前复合物相关。在机制研究中,我们发现对于HIV-1和MoMLV而言,每个HMG I(Y)单体都必须包含多个DNA结合结构域,才能刺激不含HMG I(Y)的PICs进行整合。我们还发现,通过分子间连接的刺激来衡量,HMG I(Y)在体外可使HIV-1或MoMLV的模型cDNA浓缩。与整合重建一样,该反应取决于每个HMG I(Y)单体中多个DNA结合结构域的存在。这些数据表明,多价HMG I(Y)单体与多个cDNA位点的结合使逆转录病毒cDNA紧凑化,从而促进活性整合酶-cDNA复合物的形成。