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Fusion-Defective Gibbon Ape Leukemia Virus Vectors Can Be Rescued by Homologous but Not Heterologous Soluble Envelope Proteins

机译:融合缺陷的长臂猿猿白血病病毒载体可以被同源但非异源可溶性信封蛋白拯救

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摘要

Murine leukemia virus (MLV)-derived envelope proteins containing alterations in or adjacent to the highly conserved PHQ motif present at the N terminus of the envelope surface subunit (SU) are incorporated into vector particles but are not infectious due to a postbinding block to viral entry. These mutants can be rendered infectious by the addition of soluble receptor-binding domain (RBD) proteins in the culture medium. The RBD proteins that rescue the infectivity of these defective MLV vectors can be derived from the same MLV or from other MLVs that use distinct receptors to mediate entry. We have now constructed functional immunologically reactive gibbon ape leukemia virus (GALV) envelope proteins, tagged with a feline leukemia virus (FeLV)-derived epitope tag, which are efficiently incorporated into infectious particles. Tagged GALV envelope proteins bind specifically to cells expressing the phosphate transporter protein Pit1, demonstrating for the first time that Pit1 is the binding receptor for GALV and not a coreceptor or another type of GALV entry factor. We have also determined that GALV particles bearing SU proteins with an insertion C-terminal to the PHQ motif (GALV I10) bind Pit1 but fail to infect cells. Incubation with soluble GALV RBD renders GALV I10 particles infectious, whereas incubation with soluble RBDs from MLV or FeLV-B does not. This finding is consistent with the results obtained by Lauring et al. using FeLV-T, a virus that employs Pit1 as a receptor but requires soluble FeLV RBD for entry. MLV and GALV RBDs are not able to render FeLV-T infectious (A. S. Lauring, M. M. Anderson, and J. Overbaugh, J. Virol. 75:8888-8898, 2001). Together, these results suggest that fusion-defective FeLV-T and GALV are restricted to homologous RBD rescue of infectivity.
机译:鼠白血病病毒(MLV)衍生的包膜蛋白包含在包膜表面亚基(SU)N末端的高度保守的PHQ模序中或附近的改变,已被掺入载体颗粒中,但由于对病毒的后结合阻滞而无感染性条目。通过在培养基中添加可溶性受体结合域(RBD)蛋白,可以使这些突变体具有传染性。可以挽救这些有缺陷的MLV载体传染性的RBD蛋白可以来自相同的MLV或其他使用不同受体介导进入的MLV。现在,我们已经构建了功能性免疫反应性长臂猿白血病病毒(GALV)包膜蛋白,并用猫白血病病毒(FeLV)衍生的表位标签标记,可以有效地掺入感染性颗粒中。标记的GALV包膜蛋白与表达磷酸盐转运蛋白Pit1的细胞特异性结合,这首次证明Pit1是GALV的结合受体,而不是共受体或另一类GALV进入因子。我们还确定带有带有PHQ模体C端插入端的SU蛋白的GALV颗粒(GALV I10)与Pit1结合,但不能感染细胞。与可溶性GALV RBD一起孵育会使GALV I10颗粒具有传染性,而与MLV或FeLV-B的可溶性RBD一起孵育则不会。这一发现与Lauring等人获得的结果一致。使用FeLV-T,该病毒采用Pit1作为受体,但需要可溶性FeLV RBD才能进入。 MLV和GALV RBD无法使FeLV-T具有传染性(A. S. Lauring,M。M. Anderson和J. Overbaugh,J。Virol。75:8888-8898,2001)。总之,这些结果表明融合缺陷的FeLV-T和GALV仅限于同源RBD挽救传染性。

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