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2000
Volume 12, Issue 5
  • ISSN: 0929-8665
  • E-ISSN: 1875-5305

Abstract

The local fluorescence probes, 2-(p-toluidino)-6-naphthalenesulfonic acid (TNS) and NADPH were employed to detect urea-induced conformation changes at each active site of dihydrofolate reductase (DHFR), respectively. The results indicate that local conformation change at DHF/TNS could be superimposed by the conformation change calculated from the enzyme activity change with a three-state model; while at NADPH site it is lagged in the first transition. This difference is further supported by the different relative changes of Michaelis constants at 0, 1 and 1.8 M urea for each substrate. Our results suggest that local conformation at DHF site is more flexible than that at NADPH site, and the urea-induced unfolding could be ascribed to a four-state transition.

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/content/journals/ppl/10.2174/0929866054395310
2005-07-01
2025-10-21
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  • Article Type:
    Review Article
Keyword(s): activation mechanism; dhfr; fluorescence; tns; unfolding mechanism; urea
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