4.6 Article

The Structural Basis of ATP as an Allosteric Modulator

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PLOS COMPUTATIONAL BIOLOGY
卷 10, 期 9, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pcbi.1003831

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资金

  1. National Natural Science Foundation of China [81322046, 21002062, 21102090]
  2. Shanghai Rising-Star Program [13QA1402300]
  3. Program for Professor of Special Appointment (Eastern Scholar) at Shanghai Institutions of Higher Learning
  4. Program for New Century Excellent Talents in University [NCET-12-0355]
  5. Ph.D. Programs Foundation of Ministry of Education of China [20120073110070]
  6. National Cancer Institute, National Institutes of Health [HHSN261200800001E]
  7. Intramural Research Program of the NIH, National Cancer Institute, Center for Cancer Research

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Adenosine-5'-triphosphate (ATP) is generally regarded as a substrate for energy currency and protein modification. Recent findings uncovered the allosteric function of ATP in cellular signal transduction but little is understood about this critical behavior of ATP. Through extensive analysis of ATP in solution and proteins, we found that the free ATP can exist in the compact and extended conformations in solution, and the two different conformational characteristics may be responsible for ATP to exert distinct biological functions: ATP molecules adopt both compact and extended conformations in the allosteric binding sites but conserve extended conformations in the substrate binding sites. Nudged elastic band simulations unveiled the distinct dynamic processes of ATP binding to the corresponding allosteric and substrate binding sites of uridine monophosphate kinase, and suggested that in solution ATP preferentially binds to the substrate binding sites of proteins. When the ATP molecules occupy the allosteric binding sites, the allosteric trigger from ATP to fuel allosteric communication between allosteric and functional sites is stemmed mainly from the triphosphate part of ATP, with a small number from the adenine part of ATP. Taken together, our results provide overall understanding of ATP allosteric functions responsible for regulation in biological systems.

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