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1.
Crit Rev Biotechnol ; 26(2): 95-120, 2006.
Article in English | MEDLINE | ID: mdl-16809100

ABSTRACT

Semisynthetic cephalosporins are important antibacterials in clinical practice. Semisynthetic cephalosporins are manufactured by derivatizing 7-aminocephalosporanic acid (7-ACA) and its desacetylated form. Microbial enzymes such as D-amino acid oxidase, glutaryl-7-ACA acylase and cephalosporin esterase are being used as biocatalysts for the conversion of cephalosporin C (CEPH-C) to 7-ACA and its desacetylated derivatives. Recent developments in the field of enzymatic modifications of cephalosporin with special emphasis on group of enzymes called as cephalosporin acylase is discussed in this review. Aspects related to screening methods, isolation and purification, immobilization, molecular cloning, gene structure and expression and protein engineering of cephalosporin acylases have been covered. Topics pertaining to enzymatic modifications of cephalosporin by D-amino acid oxidase, cephalosporin methoxylase and beta-lactamase are also covered.


Subject(s)
Anti-Bacterial Agents/metabolism , Cephalosporins/metabolism , Penicillin Amidase/metabolism , Protein Engineering/methods , Anti-Bacterial Agents/pharmacology , Bacteria/drug effects , Bacteria/enzymology , Cephalosporins/agonists , Cephalosporins/chemistry , Cephalosporins/pharmacology , Humans , Penicillin Amidase/chemistry , Penicillin Amidase/genetics , Penicillin Amidase/isolation & purification
2.
Bioconjug Chem ; 12(4): 485-92, 2001.
Article in English | MEDLINE | ID: mdl-11459451

ABSTRACT

Our previous paper [(1999) Bioconjugate Chem. 10, 24-31] pointed out that hydrophobicity of substrates/inhibitors plays an important role in the recognition by an oligopeptide transporter (PEPT1) expressed in the human intestinal epithelial cell line Caco-2. To determine the significance of that hydrophobicity, we have now synthesized dipeptide analogues conjugating the epsilon-amino group of Lys in Val-Lys with aliphatic carboxylic acids: acetic acid (C2), propanoic acid (C3), pentanoic acid (C5), hexanoic acid (C6), and decanoic acid (C10). The affinities of these conjugates were estimated by their inhibition of the accumulation rate of Gly-Sar, a well-established substrate for PEPT1. With the increase in length of the hydrocarbon chain of the conjugates, i.e., in the hydrophobicity of the conjugates, the inhibition strengthened. Dixon-Webb plot analysis of the inhibition by the C10-conjugated dipeptide showed competitive inhibition. The trans-stimulation effect of Val-Lys conjugated to C10 or C5 on the uptake of Ceftibuten was observed using rat brush border membrane vesicles. This findings showed that these conjugates are transportable substrates. These results confirmed that the hydrophobicity of substrates/inhibitor is one of the factors in the recognition by PEPT1.


Subject(s)
Carrier Proteins/metabolism , Cephalosporins/metabolism , Dipeptides/metabolism , Symporters , Animals , Binding, Competitive , Carrier Proteins/chemistry , Ceftibuten , Cell Membrane Structures/metabolism , Cephalosporins/agonists , Cephalosporins/pharmacokinetics , Dipeptides/antagonists & inhibitors , Dipeptides/chemical synthesis , Dipeptides/pharmacology , Fatty Acids/chemistry , Intestinal Absorption/physiology , Intestine, Small/metabolism , Male , Microvilli/metabolism , Microvilli/ultrastructure , Peptide Transporter 1 , Rats , Rats, Wistar
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