5 Results for "

meta-cleavage pathway

" in MedChemExpress (MCE) Product Catalog:
Products (5)

5 Results for "meta-cleavage pathway" in MCE Product Catalog:

Cat. No.: HY-W010062
CAS No.: 1878-66-6
4-Chlorophenylacetic acid is an aromatase antagonist. 4-Chlorophenylacetic acid inhibits estrogen-induced breast tumorigenesis by blocking estrogen conversion. 4-Chlorophenylacetic acid also serves as the sole carbon and energy source for Pseudomonas sp. CBS3; it is degraded via dechlorination and aromatic ring cleavage pathways, and induces the synthesis of protocatechuate 2,3-dioxygenase. 4-Chlorophenylacetic acid can be applied to studies related to estrogen-induced breast tumors and bacterial degradation pathways .
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Cat. No.: HY-E71568
Research Areas:  

Others

2-Hydroxymuconate tautomerase (EC 5.3.2.6) involved in the meta-cleavage pathway for the degradation of phenols, modified phenols and catechols.
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Cat. No.: HY-E71600
Research Areas:  

Others

2-Oxo-3-hexenedioate decarboxylase (EC 4.1.1.77) involved in the meta-cleavage pathway for the degradation of phenols, modified phenols and catechols.
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Cat. No.: HY-E71627
Research Areas:  

Others

3-(3-Hydroxyphenyl)propanoate hydroxylase (EC 1.14.13.127) is a flavoprotein (FAD) involved in the meta-cleavage pathway for the degradation of various phenylpropanoid compounds in E.coli.
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Cat. No.: HY-W010062R
CAS No.: 1878-66-6
4-Chlorophenylacetic acid (Standard) is the analytical standard of 4-Chlorophenylacetic acid (HY-W010062). This product is intended for research and analytical applications. 4-Chlorophenylacetic acid is an aromatase antagonist. 4-Chlorophenylacetic acid inhibits estrogen-induced breast tumorigenesis by blocking estrogen conversion. 4-Chlorophenylacetic acid also serves as the sole carbon and energy source for Pseudomonas sp. CBS3; it is degraded via dechlorination and aromatic ring cleavage pathways, and induces the synthesis of protocatechuate 2,3-dioxygenase. 4-Chlorophenylacetic acid can be applied to studies related to estrogen-induced breast tumors and bacterial degradation pathways .
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