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Fluorescence-force spectroscopy maps two-dimensional reaction landscape of the holliday junction.


ABSTRACT: Despite the recent advances in single-molecule manipulation techniques, purely mechanical approaches cannot detect subtle conformational changes in the biologically important regime of weak forces. We developed a hybrid scheme combining force and fluorescence that allowed us to examine the effect of subpiconewton forces on the nanometer scale motion of the Holliday junction (HJ) at 100-hertz bandwidth. The HJ is an exquisitely sensitive force sensor whose force response is amplified with an increase in its arm lengths, demonstrating a lever-arm effect at the nanometer-length scale. Mechanical interrogation of the HJ in three different directions helped elucidate the structures of the transient species populated during its conformational changes. This method of mapping two-dimensional reaction landscapes at low forces is readily applicable to other nucleic acid systems and their interactions with proteins and enzymes.

SUBMITTER: Hohng S 

PROVIDER: S-EPMC3558530 | biostudies-literature | 2007 Oct

REPOSITORIES: biostudies-literature

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Fluorescence-force spectroscopy maps two-dimensional reaction landscape of the holliday junction.

Hohng Sungchul S   Zhou Ruobo R   Nahas Michelle K MK   Yu Jin J   Schulten Klaus K   Lilley David M J DM   Ha Taekjip T  

Science (New York, N.Y.) 20071001 5848


Despite the recent advances in single-molecule manipulation techniques, purely mechanical approaches cannot detect subtle conformational changes in the biologically important regime of weak forces. We developed a hybrid scheme combining force and fluorescence that allowed us to examine the effect of subpiconewton forces on the nanometer scale motion of the Holliday junction (HJ) at 100-hertz bandwidth. The HJ is an exquisitely sensitive force sensor whose force response is amplified with an incr  ...[more]

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