Opstelten D J, Wallin M, Garoff H
Department for Biosciences at Novum, Karolinska Institute, S-141 57 Huddinge, Sweden.
J Virol. 1998 Aug;72(8):6537-45. doi: 10.1128/JVI.72.8.6537-6545.1998.
The nature and stability of the interactions between the gp70 and Pr15E/p15E molecules of murine leukemia virus (MLV) have been disputed extensively. To resolve this controversy, we have performed quantitative biochemical analyses on gp70-Pr15E complexes formed after independent expression of the amphotropic and ecotropic Moloney MLV env genes in BHK-21 cells. We found that all cell-associated gp70 molecules are disulfide linked to Pr15E whereas only a small amount of free gp70 is released by the cells. The complexes were resistant to treatment with reducing agents in vivo, indicating that the presence and stability of the disulfide interaction between gp70 and Pr15E are not dependent on the cellular redox state. However, disulfide-bonded Env complexes were disrupted in lysates of nonalkylated cells in a time-, temperature-, and pH-dependent fashion. Disruption seemed not to be caused by a cellular factor but is probably due to a thiol-disulfide exchange reaction occurring within the Env complex after solubilization. The possibility that alkylating agents induce the formation of the intersubunit disulfide linkage was excluded by showing that disulfide-linked gp70-Pr15E complexes exist in freshly made lysates of nonalkylated cells and that disruption of the complexes can be prevented by lowering the pH. Together, these data establish that gp70 and Pr15E form a stable disulfide-linked complex in vivo.
小鼠白血病病毒(MLV)的gp70与Pr15E/p15E分子之间相互作用的性质和稳定性一直存在广泛争议。为了解决这一争议,我们对嗜异性和嗜亲性莫洛尼MLV env基因在BHK - 21细胞中独立表达后形成的gp70 - Pr15E复合物进行了定量生化分析。我们发现,所有与细胞相关的gp70分子都通过二硫键与Pr15E相连,而细胞仅释放少量游离的gp70。这些复合物在体内对还原剂处理具有抗性,这表明gp70与Pr15E之间二硫键相互作用的存在和稳定性不依赖于细胞的氧化还原状态。然而,在未烷基化细胞的裂解物中,二硫键连接的Env复合物会以时间、温度和pH依赖性方式被破坏。这种破坏似乎不是由细胞因子引起的,而可能是由于溶解后Env复合物内发生的硫醇 - 二硫键交换反应所致。通过证明在未烷基化细胞的新鲜裂解物中存在二硫键连接的gp70 - Pr15E复合物,以及通过降低pH可以防止复合物的破坏,排除了烷基化剂诱导亚基间二硫键形成的可能性。总之,这些数据表明gp70和Pr15E在体内形成了稳定的二硫键连接复合物。