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D-正缬氨酰-D-丙氨酸对大肠杆菌W的生长抑制作用:肽聚糖肽亚基第4位D-丙氨酸的类似物

Growth inhibition of Escherichia coli W by D-norvalyl-D-alanine: an analogue of D-alanine in position 4 of the peptide subunit of peptidoglycan.

作者信息

Neuhaus F C, Goyer S, Neuhaus D W

出版信息

Antimicrob Agents Chemother. 1977 Apr;11(4):638-44. doi: 10.1128/AAC.11.4.638.

Abstract

Position 4 analogues of d-alanine in the peptide subunit of uridine 5'-diphosphate-N-acetylmuramyl-Ala(1)-dGlu(2)- Lys(3)-dAla(4)-dAla(5) have a significant inhibitory effect on penicillin-sensitive peptidoglycan synthesis in Gaffkya homari (C. V. Carpenter, S. Goyer, and F. C. Neuhaus, 1976). The specificity profile of this in vitro system has been used as a basis for designing analogues with potential antibacterial activity. To circumvent the specificity determinants exerted by d-alanine:d-alanine ligase (adenosine 5'-diphosphate), attention was directed to dd-dipeptides of the type d-alanyl-analogue-d-alanine as a method for incorporating analogues into position 4 of the peptide subunit in vivo. Of the three dipeptides, dAbu-dAla, dNva-dAla, and dVal-dAla, only dNva-dAla (5 x 10(-4) M) inhibited the growth of Escherichia coli W in the presence of 5 x 10(-6) M d-cycloserine. This concentration of d-cycloserine did not inhibit growth, but it potentiated the bactericidal activity of the dipeptide. The lack of antibacterial activity observed with dAbu-dAla and dVal-dAla was correlated with the poor ability of these dipeptides to be taken up via the dipeptide transport system of this organism. Prevention of lysis induced by dNva-dAla plus d-cycloserine by certain dipeptides and not by others supported this correlation. It is proposed that the d-norvalyl residue of the dipeptide is incorporated in vivo into position 4 of the peptide subunit of peptidoglycan, and that this subunit is not an effective substrate in the reaction(s) catalyzed by the penicillin-susceptible enzyme(s) of cross-linked peptidoglycan synthesis.

摘要

尿苷5'-二磷酸-N-乙酰胞壁酰-Ala(1)-dGlu(2)-Lys(3)-dAla(4)-dAla(5)肽亚基中d-丙氨酸的4位类似物对海氏加夫基菌(C.V.卡彭特、S.戈耶尔和F.C.纽豪斯,1976年)中对青霉素敏感的肽聚糖合成具有显著抑制作用。该体外系统的特异性特征已被用作设计具有潜在抗菌活性类似物的基础。为了规避由d-丙氨酸:d-丙氨酸连接酶(腺苷5'-二磷酸)施加的特异性决定因素,注意力转向了d-丙氨酰-类似物-d-丙氨酸类型的dd-二肽,作为在体内将类似物掺入肽亚基4位的一种方法。在三种二肽dAbu-dAla、dNva-dAla和dVal-dAla中,只有dNva-dAla(5×10⁻⁴M)在5×10⁻⁶M d-环丝氨酸存在的情况下抑制大肠杆菌W的生长。该浓度的d-环丝氨酸不抑制生长,但增强了二肽的杀菌活性。观察到dAbu-dAla和dVal-dAla缺乏抗菌活性与这些二肽通过该生物体的二肽转运系统被摄取的能力较差有关。某些二肽而非其他二肽对由dNva-dAla加d-环丝氨酸诱导的裂解的预防支持了这种相关性。有人提出,二肽的d-正缬氨酰残基在体内掺入肽聚糖肽亚基的4位,并且该亚基在交联肽聚糖合成的青霉素敏感酶催化的反应中不是有效底物。

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On the distinction between peptidase activity and peptide transport.关于肽酶活性与肽转运之间的区别。
Biochim Biophys Acta. 1963 Jun 4;71:656-63. doi: 10.1016/0006-3002(63)91139-9.

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