Aspartate aminotransferase is potently inhibited by copper complexes: Exploring copper complex-binding proteome.
In: Journal of inorganic biochemistry, Jg. 170 (2017-05-01), S. 46-54
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Zugriff:
Recent researches indicated that a copper complex-binding proteome that potently interacted with copper complexes and then influenced cellular metabolism might exist in organism. In order to explore the copper complex-binding proteome, a copper chelating ion-immobilized affinity chromatography (Cu-IMAC) column and mass spectrometry were used to separate and identify putative Cu-binding proteins in primary rat hepatocytes. A total of 97 putative Cu-binding proteins were isolated and identified. Five higher abundance proteins, aspartate aminotransferase (AST), malate dehydrogenase (MDH), catalase (CAT), calreticulin (CRT) and albumin (Alb) were further purified using a SP-, and (or) Q-Sepharose Fast Flow column. The interaction between the purified proteins and selected 11 copper complexes and CuCl 2 was investigated. The enzymes inhibition tests demonstrated that AST was potently inhibited by copper complexes while MDH and CAT were weakly inhibited. Schiff-based copper complexes 6 and 7 potently inhibited AST with the IC 50 value of 3.6 and 7.2μM, respectively and exhibited better selectivity over MDH and CAT. Fluorescence titration results showed the two complexes tightly bound to AST with binding constant of 3.89×10 6 and 3.73×10 6 M -1 , respectively and a stoichiometry ratio of 1:1. Copper complex 6 was able to enter into HepG2 cells and further inhibit intracellular AST activity.
(Copyright © 2017 Elsevier Inc. All rights reserved.)
Titel: |
Aspartate aminotransferase is potently inhibited by copper complexes: Exploring copper complex-binding proteome.
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Autor/in / Beteiligte Person: | Jia, Y ; Lu, L ; Yuan, C ; Feng, S ; Zhu, M |
Zeitschrift: | Journal of inorganic biochemistry, Jg. 170 (2017-05-01), S. 46-54 |
Veröffentlichung: | New York, Elsevier., 2017 |
Medientyp: | academicJournal |
ISSN: | 1873-3344 (electronic) |
DOI: | 10.1016/j.jinorgbio.2017.02.011 |
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