4.4 Article

Extreme biophysics: Enzymes under pressure

期刊

JOURNAL OF COMPUTATIONAL CHEMISTRY
卷 38, 期 15, 页码 1174-1182

出版社

WILEY
DOI: 10.1002/jcc.24737

关键词

pressure and temperature dependence; atomic fluctuations; extremophiles

资金

  1. McGowan Foundation
  2. Department of Energy/National Nuclear Security Administration through the Carnegie/DOE Alliance Center [CDAC] [DE-NA-0002006]
  3. Alfred P. Sloan Foundation through the Deep Carbon Observatory
  4. Extreme Science and Engineering Discovery Environment - National Science Foundation [MCB990010, OCI-1053575]
  5. Medusa cluster

向作者/读者索取更多资源

A critical question about piezophilic (pressure-loving) microbes is how their constituent molecules maintain function under high pressure. Here, factors are examined that may lead to the increased activity under pressure in dihydrofolate reductase from the piezophilic Moritella profunda compared to the homologous enzyme from the mesophilic Escherichia coli. Molecular dynamics simulations are performed at various temperatures and pressures to examine how pressure affects the flexibility of the enzymes from these two microbes, since both stability and flexibility are necessary for enzyme activity. The results suggest that collective motions on the 10-ns timescale are responsible for the flexibility necessary for corresponding states activity at the growth conditions of the parent organism. In addition, the results suggest that while the lower stability of many enzymes from deep-sea microbes may be an adaptation for greater flexibility at low temperatures, high pressure may enhance their adaptation to low temperatures. (c) 2017 Wiley Periodicals, Inc.

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