Miller C G, Schwartz G
J Bacteriol. 1978 Aug;135(2):603-11. doi: 10.1128/jb.135.2.603-611.1978.
Mutant derivatives of Escherichia coli K-12 deficient in several peptidases have been obtained. Mutants lacking a naphthylamidase, peptidase N, were isolated by screening for colonies unable to hydrolyze L-alanine beta-naphthylamide. Other mutants were isolated using positive selections for resistance to valine peptides. Mutants lacking peptidase A, a broad-specificity aminopeptidase, were obtained by selection for resistance to L-valyl-L-leucine amide. Mutants lacking a dipeptidase, peptidase D, were isolated from a pepN pepA strain by selection for resistance to L-valyl-glycine. Starting with a pepN pepA pepD strain, selection for resistance to L-valyl-glycyl-glycine or several other valine peptides produced mutants deficient in another aminopeptidase, peptidase B. Mutants resistant to L-valyl-L-proline lack peptidase Q, an activity capable of rapid hydrolysis of X-proline dipeptides. Using these selection procedures, a strain (CM89) lacking five different peptidases has been isolated. Although still sensitive to valine, this strain is resistant to a variety of valine di- and tripeptides. The ability of this strain to use peptides as sources of amino acids is much more restricted than that of wild-type E. coli strains. Strains containing only one of the five peptidases missing in CM89 have been constructed by transduction. The peptide utilization profiles of these strains show that each of the five peptidases can function during growth in the catabolism of peptides.
已获得大肠杆菌K-12的几种肽酶缺陷型突变衍生物。通过筛选无法水解L-丙氨酸β-萘酰胺的菌落,分离出缺乏萘基酰胺酶(肽酶N)的突变体。使用对缬氨酸肽的抗性阳性选择法分离出其他突变体。通过选择对L-缬氨酰-L-亮氨酸酰胺的抗性,获得了缺乏肽酶A(一种广泛特异性氨肽酶)的突变体。通过选择对L-缬氨酰-甘氨酸的抗性,从pepN pepA菌株中分离出缺乏二肽酶(肽酶D)的突变体。从pepN pepA pepD菌株开始,选择对L-缬氨酰-甘氨酰-甘氨酸或其他几种缬氨酸肽的抗性,产生了缺乏另一种氨肽酶(肽酶B)的突变体。对L-缬氨酰-L-脯氨酸有抗性的突变体缺乏肽酶Q,该酶具有快速水解X-脯氨酸二肽的活性。使用这些选择程序,分离出了一种缺乏五种不同肽酶的菌株(CM89)。尽管该菌株对缬氨酸仍敏感,但对多种缬氨酸二肽和三肽具有抗性。与野生型大肠杆菌菌株相比,该菌株利用肽作为氨基酸来源的能力受到更大限制。通过转导构建了仅含有CM89中缺失的五种肽酶之一的菌株。这些菌株的肽利用谱表明,这五种肽酶中的每一种在肽分解代谢的生长过程中都能发挥作用。