Abstract
The novel antibacterial peptide mimetic alaphosphin (l-alanyl-l-1-aminoethylphosphonic acid) selectively inhibited peptidoglycan biosynthesis in both gram-negative and gram-positive bacteria. It induced accumulation of uridine diphosphate-N-acetyl-muramyl-tripeptide in gram-positive organisms and significantly reduced the intracellular pool levels of d-alanine. Alaphosphin was actively transported into bacterial cells by stereospecific peptide permeases and was subsequently hydrolyzed by intracellular aminopeptidases to yield l-1-aminoethylphosphonic acid. This alanine mimetic rapidly accumulated inside susceptible cells to yield a concentration which was 100- to 1,000-fold in excess of that of the precursor peptide in the surrounding medium. In the case of susceptible gram-negative organisms, it was shown that 1-aminoethylphosphonic acid was incorporated into a metabolite which was tentatively identified as uridine diphosphate-N-acetylmuramyl-aminoethylphosphonate. The primary intracellular target site of 1-aminoethylphosphonic acid was alanine racemase (EC 5.1.1.1), which was reversibly and competitively inhibited in the gram-negative organisms Escherichia coli and Pseudomonas aeruginosa and irreversibly inhibited in a time-dependent manner in the gram-positive organisms Staphylococcus aureus and Streptococcus faecalis. A secondary target site could be uridine diphosphate-N-acetylmuramyl-l-alanine synthetase [EC 6.3.2.8(b)]. The mechanism of action of alaphosphin may be regarded as involving at least three stages: (i) active transport by peptide permeases; (ii) intracellular peptidase cleavage; and (iii) action of l-1-aminoethylphosphonate on alanine racemase.
MeSH Terms
Alanine/analogs & derivatives,metabolism,pharmacology
Alanine Racemase/antagonists & inhibitors
Anti-Bacterial Agents
Bacteria/drug effects,metabolism
Bacterial Proteins/metabolism
Cell Wall/metabolism
DNA, Bacterial/metabolism
Organophosphorus Compounds/metabolism,pharmacology
Phosphopeptides/metabolism,pharmacology
RNA, Bacterial/metabolism
Uridine Diphosphate/metabolism
Chemicals
Anti-Bacterial Agents
Bacterial Proteins
DNA, Bacterial
Organophosphorus Compounds
Phosphopeptides
RNA, Bacterial
alafosfalin
Uridine Diphosphate
Alanine Racemase
Alanine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Atherton F R
Hall M J
Hassall C H
Lambert R W
Lloyd W J
Ringrose P S
References (28)
28 references, click to expand
-
Influence of environment on the content and composition of microbial free amino acid pools.
J Gen Microbiol. 1970 Dec;64(2):171-85
PMID: 4995906
-
Transport of aminophosphonic acids in Lactobacillus plantarum and Streptococcus faecalis.
J Bacteriol. 1968 Oct;96(4):950-7
PMID: 4971894
-
A modified colorimetric method for the estimation of N-acetylamino sugars.
J Biol Chem. 1955 Dec;217(2):959-66
PMID: 13271455
-
THE ENZYMATIC SYNTHESIS OF D-ALANYL-D-ALANINE. 3. ON THE INHIBITION OF D-ALANYL-D-ALANINE SYNTHETASE BY THE ANTIBIOTIC D-CYCLOSERINE.
Biochemistry. 1964 Apr;3:471-80
PMID: 14188160
-
BIOCHEMICAL EFFECTS OF NOVOBIOCIN ON STAPHYLOCOCCUS AUREUS.
J Bacteriol. 1965 Apr;89:1117-23
PMID: 14276105
-
Mutants of Escherichia coli requiring methionine or vitamin B12.
J Bacteriol. 1950 Jul;60(1):17-28
PMID: 15436457
-
Transamination of aminoalkylphosphonic acids with alpha ketoglutarate.
Science. 1968 Feb 23;159(3817):886-8
PMID: 17768980
-
On the transport of tripeptide antibiotics in bacteria.
Eur J Biochem. 1976 Jun 15;66(1):11-23
PMID: 8311
-
Phosphonopeptides as antibacterial agents: alaphosphin and related phosphonopeptides.
Antimicrob Agents Chemother. 1979 May;15(5):684-95
PMID: 43113
-
Suicide substrates for the alanine racemase of Escherichia coli B.
Biochemistry. 1978 Apr 4;17(7):1313-21
PMID: 350267
-
Phosphonopeptides as antibacterial agents: rationale, chemistry, and structure-activity relationships.
Antimicrob Agents Chemother. 1979 May;15(5):677-83
PMID: 525986
-
Phosphonopeptides, a new class of synthetic antibacterial agents.
Nature. 1978 Mar 2;272(5648):56-8
PMID: 628432
-
Synergy in the antimicrobial action of penicillin and beta-chloro-D-alanine in vitro.
Antimicrob Agents Chemother. 1976 Feb;9(2):347-9
PMID: 773296
-
Peptides and micro-organisms.
Adv Microb Physiol. 1976;13:55-113
PMID: 775944
-
The mode of action of bacilysin and anticapsin and biochemical properties of bacilysin-resistant mutants.
J Gen Microbiol. 1976 May;94(1):46-54
PMID: 819624
-
Inhibition of aminopeptidase B and leucine aminopeptidase by bestatin and its stereoisomer.
Arch Biochem Biophys. 1976 Nov;177(1):196-200
PMID: 999285
-
Inhibition of bacterial growth by beta-chloro-D-alanine.
Proc Natl Acad Sci U S A. 1974 Feb;71(2):417-21
PMID: 4150023
-
Mode of action of glycine on the biosynthesis of peptidoglycan.
J Bacteriol. 1973 Nov;116(2):1029-53
PMID: 4200845
-
A rapid, guantitative, and selective estimation of radioactively labeled peptidoglycan in gram-positive bacteria.
Anal Biochem. 1971 Dec;44(2):645-53
PMID: 4257049
-
The chemical basis for the action of the vancomycin group of antibiotics.
Ann N Y Acad Sci. 1974 May 10;235(0):348-63
PMID: 4369274
-
Studies on Escherichia coli enzymes involved in the synthesis of uridine diphosphate-N-acetyl-muramyl-pentapeptide.
J Bacteriol. 1972 Apr;110(1):26-34
PMID: 4552992
-
Mechanism of D-cycloserine action: alanine racemase from Escherichia coli W.
J Bacteriol. 1972 Jun;110(3):978-87
PMID: 4555420
-
Illicit transport: the oligopeptide permease.
Proc Natl Acad Sci U S A. 1973 Feb;70(2):456-8
PMID: 4568730
-
Transport of impermeant substances in E. coli by way of oligopeptide permease.
Nat New Biol. 1973 Feb 7;241(110):161-3
PMID: 4573266
-
The mechanism of action of fosfomycin (phosphonomycin).
Ann N Y Acad Sci. 1974 May 10;235(0):364-86
PMID: 4605290
-
Mechanism of D-cycloserine action: transport mutants for D-alanine, D-cycloserine, and glycine.
J Bacteriol. 1971 Mar;105(3):1028-35
PMID: 4926674
-
The metabolism of phosphonates by microorganisms. The transport of aminoethylphosphonic acid in Bacillus cereus.
Biochim Biophys Acta. 1967 Jun 13;141(1):79-90
PMID: 4963810
-
Bacterial growth on aminoalkylphosphonic acids.
J Bacteriol. 1966 Sep;92(3):623-7
PMID: 5922537