Naider F, Becker J M
J Bacteriol. 1975 Jun;122(3):1208-15. doi: 10.1128/jb.122.3.1208-1215.1975.
The ability of Escherichia coli K-12 4212 to utilize a variety of oligopeptides as sources of required amino acids was examined. Triornithine-resistant mutants of this strain were oligopeptide permease deficient (Opp-) as judged by their inability to utilize (Lys)3 and (Lys)4 as sources of lysine and their resistance to the toxic tripeptide (Val)3. These same mutants were able to grow when Met-Met-Met, Met-Gly-Met, Met-Gly-Gly, Gly-Met-Gly, Gly-Gly-Met, Gly-Met-Met, Met-Met-Gly, or Leu-Leu-Leu were supplied in place of the requisite amino acid. The system mediating the uptake of these peptides, herein designated Opr I, was not able to transport N-alpha-acetylated peptides, nor the tetrapeptides Met-Gly-Met-Met, Met-Met-Gly-Met, or Met-Met-Met-Gly. Competition experiments indicated that trimethionine and trileucine enter E. coli K-12 via either Opp or Opr I. Analogous results were found using the methionine, leucine-requiring auxotroph E. coli B163. It appears that more than one oligopeptide transport system exists in E. coli and that the system mediating peptide uptake is complex.
研究了大肠杆菌K - 12 4212利用多种寡肽作为必需氨基酸来源的能力。通过该菌株不能利用(Lys)3和(Lys)4作为赖氨酸来源以及对有毒三肽(Val)3具有抗性来判断,该菌株的抗鸟氨酸突变体是寡肽通透酶缺陷型(Opp-)。当提供Met - Met - Met、Met - Gly - Met、Met - Gly - Gly、Gly - Met - Gly、Gly - Gly - Met、Gly - Met - Met、Met - Met - Gly或Leu - Leu - Leu来代替必需氨基酸时,这些相同的突变体能够生长。介导这些肽摄取的系统,在此称为Opr I,不能转运N-α-乙酰化肽,也不能转运四肽Met - Gly - Met - Met、Met - Met - Gly - Met或Met - Met - Met - Gly。竞争实验表明,三甲硫氨酸和三亮氨酸通过Opp或Opr I进入大肠杆菌K - 12。使用需要甲硫氨酸、亮氨酸的营养缺陷型大肠杆菌B163也发现了类似的结果。看来大肠杆菌中存在不止一种寡肽转运系统,并且介导肽摄取的系统很复杂。