Cytotechnology. 1997 Sep;24(3):227-34. doi: 10.1023/A:1007988713571.
During the production by mammalian cells of recombinant factor VIII from which the B domain was deleted (rFVIII), proteolytic cleavages in the C-terminal part of the heavy chain were observed (Kjalke et al., 1995). By radioactive pulse labelling it was investigated whether the cleavages took place inside the cells during protein synthesis or after release in the medium. The rFVIII-producing CHO (Chinese hamster ovary) cells were cultured in the presence of (35)S-methionine and then the cell lysate and the conditioned media were immunoprecipitated and analyzed by electrophoresis. By pulse labelling and chasing for various time periods, it was shown that the cleavages only took place after secretion of the protein from the cells. Adding cell lysate to uncleaved rFVIII caused cleavage of the heavy chain, as seen by loss of binding to a monoclonal antibody specific for intact rFVIII, indicating that the cleavage was performed by proteinase(s) released from the lysed cells. By incubating intact rFVIII with the multicatalytic proteinase (proteasome) present in cytoplasm and nucleus of eukaryotic cells, loss of binding to the monoclonal antibody was observed. This indicates that the multicatalytic proteinase, released from lysed rFVIII producing cells, could be responsible for the cleavage of rFVIII. Among several protease inhibitors tested, only bacitracin was found to diminish the extent of cleavage. Phosphatidylserine also protected rFVIII against cleavage, probably by binding to rFVIII.
在哺乳动物细胞生产缺失 B 结构域的重组因子 VIII(rFVIII)的过程中,观察到重链 C 末端部分的蛋白水解切割(Kjalke 等人,1995)。通过放射性脉冲标记,研究了这些切割是在蛋白质合成过程中发生在细胞内,还是在释放到培养基后发生的。用 (35)S-蛋氨酸培养生产 rFVIII 的 CHO(中国仓鼠卵巢)细胞,然后用免疫沉淀法对细胞裂解物和条件培养基进行免疫沉淀,并通过电泳进行分析。通过脉冲标记和不同时间段的追踪,表明这些切割仅发生在蛋白质从细胞中分泌之后。向未切割的 rFVIII 中添加细胞裂解物会导致重链的切割,这表现为与针对完整 rFVIII 的单克隆抗体的结合丧失,表明切割是由从裂解细胞中释放的蛋白酶完成的。通过将完整的 rFVIII 与真核细胞细胞质和核中存在的多催化蛋白酶(蛋白酶体)孵育,观察到与单克隆抗体的结合丧失。这表明,从裂解的 rFVIII 产生细胞中释放的多催化蛋白酶可能负责 rFVIII 的切割。在测试的几种蛋白酶抑制剂中,只有杆菌肽被发现能减少切割程度。磷脂酰丝氨酸也能保护 rFVIII 免受切割,可能是通过与 rFVIII 结合。