Murray James L, Hu Qin-xue, Navenot Jean-Marc, Peiper Stephen C
Henry Vogt Cancer Research Center, University of Louisville, Louisville, Kentucky 40202, USA.
Biochem Biophys Res Commun. 2002 Mar 29;292(2):449-55. doi: 10.1006/bbrc.2002.6677.
Immunoglobulin-like domain 1 of CD4 (D1-CD4) promotes HIV infection by binding the envelope glycoprotein (ENV) and exposing its coreceptor-binding site. To study CD4-ENV-coreceptor interactions, we characterized hybrid receptors having domains 1 and 2 of CD4 (D1D2-CD4) joined to the N-terminus of chemokine receptors CCR5, CXCR4, CXCR2, and DARC. Hybrid receptors showed conserved ENV-coreceptor specificity in cell-cell fusion assays. Although D1D2-CD4-CCR5 was sufficient to permit ENV-mediated fusion, D1-CD4-CCR5 and human D1/mouse D2-CD4-CCR5 lacked CD4 function and binding to a neutralizing antibody mapped to D1-CD4. Chimeric D1D2-CD4 joined to CCR5 revealed that the C-terminal 20 residues of human D2-CD4 are required for efficient ENV-mediated fusion. Mutagenesis of hybrid receptors showed the importance of residues forming D1-D2 CD4 interdomain contacts and hinge region proximal residues. Mutagenesis of WT human CD4 confirmed that residues forming D1-D2 interdomain contacts and hinge-region proximal residues contribute positively to CD4 activity in the full-length receptor.
CD4的免疫球蛋白样结构域1(D1-CD4)通过结合包膜糖蛋白(ENV)并暴露其共受体结合位点来促进HIV感染。为了研究CD4-ENV-共受体相互作用,我们对具有CD4的结构域1和2(D1D2-CD4)并连接到趋化因子受体CCR5、CXCR4、CXCR2和DARC的N端的杂交受体进行了表征。杂交受体在细胞-细胞融合试验中显示出保守的ENV-共受体特异性。尽管D1D2-CD4-CCR5足以允许ENV介导的融合,但D1-CD4-CCR5和人D1/小鼠D2-CD4-CCR5缺乏CD4功能且与定位到D1-CD4的中和抗体结合。与CCR5连接的嵌合D1D2-CD4表明人D2-CD4的C端20个残基对于有效的ENV介导的融合是必需的。杂交受体的诱变显示了形成D1-D2 CD4结构域间接触的残基和铰链区近端残基的重要性。野生型人CD4的诱变证实,形成D1-D2结构域间接触的残基和铰链区近端残基对全长受体中的CD4活性有正向贡献。