Denèfle P, Kovarik S, Ciora T, Gosselet N, Bénichou J C, Latta M, Guinet F, Ryter A, Mayaux J F
Laboratoire de Génétique, Centre de Recherche de Vitry, Rhône Poulenc Santé, Vitry-sur-Seine, France.
Gene. 1989 Dec 28;85(2):499-510. doi: 10.1016/0378-1119(89)90444-7.
Expression plasmids carrying the coding sequence of mature human interleukin 1 beta (IL 1 beta) linked either to a Met start codon, or fused to different efficient Escherichia coli secretion signal sequences, have been constructed. In the latter case, we used signal peptides derived either from an outer membrane protein (OmpA) or from a periplasmic protein (PhoA). The synthesis of IL1 beta from these fusions was investigated in an otherwise strictly isogenic context using identical conditions of derepression and culture media. The Met-IL1 beta fusion produced a soluble cytoplasmic protein which could be released from the cells by osmotic shock whereas the OmpA and PhoA fusions were always insoluble. The extent of sOmpA-IL1 beta maturation was found to vary from 50 to 100%, mainly depending on the medium used, whereas no significant maturation of the signal peptide could be detected in the case of the sPhoA-IL1 beta fusion. Immuno-electron microscopy revealed that the sOmpA-IL1 beta fusion was targeted to the inner membrane, whereas the sPhoA-IL1 beta fusion remained within the cytoplasm and thus did not appear to enter the secretion pathway. Amplifying the E. coli signal peptidase lep gene on a multicopy plasmid did not improve signal peptide removal from sOmpA-IL1 beta. Moreover, these E. coli secretion vectors allowed us to produce, in high levels, IL1 beta fragments which otherwise could not be stably accumulated within the cytoplasmic compartment.
已构建出携带成熟人白细胞介素1β(IL - 1β)编码序列的表达质粒,该序列要么与甲硫氨酸起始密码子相连,要么与不同的高效大肠杆菌分泌信号序列融合。在后一种情况下,我们使用了源自外膜蛋白(OmpA)或周质蛋白(PhoA)的信号肽。在相同的去阻遏条件和培养基下,在严格同基因的背景下研究了这些融合蛋白产生IL1β的情况。Met - IL1β融合蛋白产生了一种可溶性胞质蛋白,可通过渗透压休克从细胞中释放出来,而OmpA和PhoA融合蛋白总是不溶性的。发现sOmpA - IL1β的成熟程度在50%至100%之间变化,主要取决于所用的培养基,而在sPhoA - IL1β融合蛋白的情况下,未检测到信号肽有明显成熟。免疫电子显微镜显示,sOmpA - IL1β融合蛋白定位于内膜,而sPhoA - IL1β融合蛋白保留在细胞质中,因此似乎未进入分泌途径。在多拷贝质粒上扩增大肠杆菌信号肽酶lep基因并不能改善从sOmpA - IL1β中去除信号肽的情况。此外,这些大肠杆菌分泌载体使我们能够高水平地产生IL1β片段,否则这些片段无法在细胞质区室中稳定积累。