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PROTEASE-DEPENDENT STREPTOMYCIN SENSITIVITY IN E-COLI - A SYSTEM FOR PROTEASE INHIBITOR SELECTION

机译:大肠杆菌中与蛋白酶相关的链霉菌敏感性-蛋白酶抑制剂选择系统

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We have developed a bacterial cell system in which the activity of an expressed heterologous protease confers a dominant streptomycin-sensitive (str(s)) phenotype on the cells. This phenotype owes its high selectivity to the fact that streptomycin (strep) resistance, which is conferred on E. coli by mutants of ribosomal protein S12, is highly recessive to strep sensitivity, Thus, when strep-resistant (str(r)) strains of E. coli are transformed to co-express the wild-type allele of S12 in addition to the mutant allele, their sensitivity to strep increases by a factor of 100-1000. Similarly, we found that when the same str(r) strains were transformed to co-express a heterologous protease and an inactive fusion of S12 with a substrate of the protease, the strep sensitivity of the cells increased similar to 100-fold, This effect was strictly dependent on correct cleavage of the S12 precursor, required only modest levels of expression of protease and substrate, and could be competitively inhibited by co-expression of an alternative substrate gene, This system thus appears to be well-suited to the identification of protease inhibitors, either by selection from libraries of endogenously expressed random peptide-encoding genes, or by screening synthetic or natural products libraries, Protease-dependent dominant phenotypes may be more sensitive and appropriate than the more commonly used recessive phenotypes for proteases which are activating enzymes.
机译:我们已经开发了一种细菌细胞系统,其中表达的异源蛋白酶的活性赋予细胞显性链霉素敏感的(str(s))表型。这种表型具有很高的选择性,这是由于核糖体蛋白S12突变体赋予大肠杆菌的链霉素(strep)耐药性对strep敏感性高度隐性,因此,当具有抗strep的(str(r))菌株时除了突变型等位基因外,大肠杆菌转化了大肠杆菌以共表达S12的野生型等位基因,它们对链球菌的敏感性提高了100-1000倍。类似地,我们发现当将相同的str(r)菌株转化为共表达异源蛋白酶,并且S12与蛋白酶底物无活性融合时,细胞的链球菌敏感性增加了近100倍,这种效应严格依赖于S12前体的正确切割,仅要求蛋白酶和底物的表达水平适中,并且可以通过共表达另一种底物基因而竞争性地抑制。因此,该系统似乎非常适合鉴定S12前体。蛋白酶抑制剂,无论是从内源表达的随机肽编码基因文库中进行选择,还是通过筛选合成或天然产物文库,蛋白酶依赖性显性表型可能比激活酶的蛋白酶更常用的隐性表型更为敏感和合适。 。

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