Kilpatrick D R, Srinivas R V, Compans R W
Department of Microbiology, University of Alabama, Birmingham 35294.
J Biol Chem. 1989 Jun 25;264(18):10732-7.
The gp52 envelope glycoprotein of Friend spleen focus-forming virus (SFFV) is a recombinant molecule derived from Friend murine leukemia virus (MuLV) by various deletions, insertions, and substitutions. The SFFV gp52 glycoprotein, unlike MuLV envelope glycoproteins, is defective in transport to the cell surface. Only 3-5% of gp52 eventually reaches the cell surface as a processed form (gp65). Although gp52 lacks cytoplasmic tail residues found in MuLV glycoproteins, we have previously shown that this deletion is not responsible for its defective transport. In order to investigate the basis for the defective transport of gp52, we have examined the folding and assembly of gp52 molecules into oligomeric molecules. CV-1 cells infected with vaccinia virus recombinants expressing SFFV gp52 were pulse labeled and the cell extracts were fractionated by velocity centrifugation through sucrose gradients. Immediately after a 10-min pulse, gp52 was detected as a monomer in the upper part of the sucrose gradient (fractions 12 and 14) and it remained as such after a 2-h chase period. However, the processed form, gp65, was found in a lower part of the gradient (fraction 8) after a 2-h chase. The position of gp65 was found to correspond to the position of trimeric influenza hemagglutinin which was analyzed on a parallel sucrose gradient, suggesting that gp65 also exists as a trimer in this fraction. These results indicate that changes in the external domain of gp52 result in improper folding of the glycoprotein molecule, and suggest that this lack of oligomerization is responsible for the defective transport of the molecules. Only those molecules that do form oligomeric structures are transported to the Golgi complex and undergo further oligosaccharide processing, and transport to the cell surface.
弗氏脾集落形成病毒(SFFV)的gp52包膜糖蛋白是一种重组分子,它通过各种缺失、插入和替换,从弗氏鼠白血病病毒(MuLV)衍生而来。与MuLV包膜糖蛋白不同,SFFV gp52糖蛋白在转运至细胞表面的过程中存在缺陷。最终只有3%-5%的gp52以加工形式(gp65)到达细胞表面。尽管gp52缺少MuLV糖蛋白中存在的胞质尾残基,但我们之前已表明,这种缺失并非其转运缺陷的原因。为了研究gp52转运缺陷的基础,我们检测了gp52分子折叠成寡聚分子的情况。用表达SFFV gp52的痘苗病毒重组体感染CV-1细胞,进行脉冲标记,然后通过蔗糖梯度速度离心对细胞提取物进行分级分离。在10分钟脉冲后立即检测到gp52在蔗糖梯度上部(第12和14组分)以单体形式存在,在2小时追踪期后仍保持如此。然而,在2小时追踪后,加工形式的gp65在梯度下部(第8组分)被发现。发现gp65的位置与在平行蔗糖梯度上分析的三聚体流感血凝素的位置相对应,这表明gp65在该组分中也以三聚体形式存在。这些结果表明,gp52外部结构域的变化导致糖蛋白分子折叠不当,并表明这种缺乏寡聚化是分子转运缺陷的原因。只有那些形成寡聚结构的分子才会被转运到高尔基体复合体,进行进一步的寡糖加工,并转运到细胞表面。