Source:http://linkedlifedata.com/resource/pubmed/id/18518003
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Predicate | Object |
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rdf:type | |
lifeskim:mentions | |
pubmed:issue |
13
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pubmed:dateCreated |
2008-6-3
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pubmed:abstractText |
Thermally activated barrier crossing in the presence of an increasing load can reveal kinetic rate constants and energy barrier parameters when repeated over a range of loading rates. Here we derive a model of the mean escape force for all relevant loading rates-the complete force spectrum. Two well-known approximations emerge as limiting cases, one of which confirms predictions that single-barrier spectra should converge to a phenomenological description in the slow loading limit.
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pubmed:language |
eng
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pubmed:journal | |
pubmed:citationSubset |
IM
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pubmed:chemical | |
pubmed:status |
MEDLINE
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pubmed:month |
Apr
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pubmed:issn |
0031-9007
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pubmed:author | |
pubmed:issnType |
Print
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pubmed:day |
4
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pubmed:volume |
100
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pubmed:owner |
NLM
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pubmed:authorsComplete |
Y
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pubmed:pagination |
138302
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pubmed:meshHeading |
pubmed-meshheading:18518003-Avidin,
pubmed-meshheading:18518003-Biotin,
pubmed-meshheading:18518003-Diffusion,
pubmed-meshheading:18518003-Kinetics,
pubmed-meshheading:18518003-Linear Models,
pubmed-meshheading:18518003-Models, Chemical,
pubmed-meshheading:18518003-Protein Folding,
pubmed-meshheading:18518003-Thermodynamics
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pubmed:year |
2008
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pubmed:articleTitle |
Unified model of dynamic forced barrier crossing in single molecules.
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pubmed:affiliation |
Chemistry, Materials, Earth, and Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, California 94550, USA.
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pubmed:publicationType |
Journal Article,
Research Support, U.S. Gov't, Non-P.H.S.
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