Metabolic engineering of aminocoumarins: inactivation of the methyltransferase gene cloP and generation of new clorobiocin derivatives in a heterologous host.
about
Structure-activity relationships of aminocoumarin-type gyrase and topoisomerase IV inhibitors obtained by combinatorial biosynthesisThe Crystal Structure of the Novobiocin Biosynthetic Enzyme NovP: The First Representative Structure for the TylF O-Methyltransferase SuperfamilyRecent developments in antibacterial drug discovery: microbe-derived natural products--from collection to the clinic.Antibacterial activity of 2-alkynoic fatty acids against multidrug-resistant bacteria.RebG- and RebM-catalyzed indolocarbazole diversification.S-adenosyl-methionine-dependent methyltransferases: highly versatile enzymes in biocatalysis, biosynthesis and other biotechnological applications.Acyl transfer in clorobiocin biosynthesis: involvement of several proteins in the transfer of the pyrrole-2-carboxyl moiety to the deoxysugar.Characterization of Methyltransferase AlmCII in Chalcomycin Biosynthesis: The First TylF Family O-Methyltransferase Works on a 4'-Deoxysugar.
P2860
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P2860
Metabolic engineering of aminocoumarins: inactivation of the methyltransferase gene cloP and generation of new clorobiocin derivatives in a heterologous host.
description
2005 nî lūn-bûn
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2005年の論文
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name
Metabolic engineering of amino ...... atives in a heterologous host.
@en
Metabolic engineering of amino ...... atives in a heterologous host.
@nl
type
label
Metabolic engineering of amino ...... atives in a heterologous host.
@en
Metabolic engineering of amino ...... atives in a heterologous host.
@nl
prefLabel
Metabolic engineering of amino ...... atives in a heterologous host.
@en
Metabolic engineering of amino ...... atives in a heterologous host.
@nl
P2093
P2860
P356
P1433
P1476
Metabolic engineering of amino ...... atives in a heterologous host.
@en
P2093
Anja Freitag
Heike Rapp
Shu-Ming Li
P2860
P304
P356
10.1002/CBIC.200500019
P50
P577
2005-08-01T00:00:00Z