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1 in association with the pathway intermediate beta-ketoadipate.
2 oxybenzoate and numerous lignin monomers, to beta-ketoadipate.
3 mino aromatics, and lignin monomers, also to beta-ketoadipate.
4 ed that pcaY is expressed in the presence of beta-ketoadipate, a common intermediate in the pathway.
5 c compounds that are metabolized through the beta-ketoadipate catabolic pathway serve as chemoattract
6 catalyzed decarboxylation of the alpha-amino-beta-ketoadipate intermediate to form an enol that is in
7  of the phenolic compound protocatechuate to beta-ketoadipate is exerted by the gene pcaQ.
8                                          The beta-ketoadipate pathway (beta-KAP) is an enzyme-mediate
9  contain a spontaneous mutation blocking the beta-ketoadipate pathway and preventing the toxic accumu
10                   The catechol branch of the beta-ketoadipate pathway appears to be the evolutionary
11 tor which is distinct from regulators of the beta-ketoadipate pathway characterized in other bacteria
12 or, controls transcription of genes encoding beta-ketoadipate pathway enzymes through its interaction
13      In the face of enzyme conservation, the beta-ketoadipate pathway exhibits many permutations in d
14 ized via catechol, cis,cis-muconate, and the beta-ketoadipate pathway in Acinetobacter calcoaceticus
15 -hydroxybenzoate and protocatechuate via the beta-ketoadipate pathway in Agrobacterium tumefaciens is
16 s associated with the benzoate branch of the beta-ketoadipate pathway in being close to the pca-qui-p
17 enzymes in the protocatechuate branch of the beta-ketoadipate pathway in microorganisms, catalyze the
18                                          The beta-ketoadipate pathway is a chromosomally encoded conv
19 lactonizing enzyme (MLE), a component of the beta-ketoadipate pathway of Pseudomonas putida, is a mem
20 omonas putida that is encoded as part of the beta-ketoadipate pathway regulon for aromatic acid degra
21  versatility of transport systems encoded by beta-ketoadipate pathway regulons is just beginning to b
22  evolution, natural selection has caused the beta-ketoadipate pathway to assume a characteristic set
23 g cleavage and are further converted via the beta-ketoadipate pathway to central carbon metabolism.
24 sources simultaneously, all degraded via the beta-ketoadipate pathway, A. calcoaceticus preferentiall
25                 Degradation proceeds via the beta-ketoadipate pathway, comprising two discrete branch
26 is,cis-muconate to (4S)-muconolactone in the beta-ketoadipate pathway, has provided critical insights
27 Several fungi metabolize benzoic acid by the beta-ketoadipate pathway, involving the hydroxylation of
28  Only B. suis 1330 appears to have an intact beta-ketoadipate pathway, responsible for utilization of
29 ehavioral responses of different bacteria to beta-ketoadipate pathway-associated aromatic compounds.
30 techuate, which was then mineralized via the beta-ketoadipate pathway.
31 owing further degradation to proceed via the beta-ketoadipate pathway.
32 rgent evolutionary origin for the eukaryotic beta-ketoadipate pathway.
33 al intermediates through o-phthalate and the beta-ketoadipate pathway.
34 benzoate, which leads to the accumulation of beta-ketoadipate, thereby increasing pcaY expression.
35 dditional steps accomplish the conversion of beta-ketoadipate to tricarboxylic acid cycle intermediat

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