2002
DOI: 10.1016/s0006-3495(02)75664-6
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Dissecting Streptavidin-Biotin Interaction with a Laminar Flow Chamber

Abstract: A laminar flow chamber was used to study single molecule interactions between biotinylated surfaces and streptavidin-coated spheres subjected to a hydrodynamic drag lower than a piconewton. Spheres were tracked with 20 ms and 40 nm resolution. They displayed multiple arrests lasting between a few tens of milliseconds and several minutes or more. Analysis of about 500,000 positions revealed that streptavidin-biotin interaction was multiphasic: transient bound states displayed a rupture frequency of 5.3 s(-1) an… Show more

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Cited by 86 publications
(132 citation statements)
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“…Similar conclusions were obtained when streptavidin-coated spheres were made to interact with biotinylated surfaces [11]. Transient binding states were observed under conditions where the forces imposed on bonds varied between 3.5 and 11 pN.…”
Section: Dissection Of Single Molecular Bonds With a Flow Chambersupporting
confidence: 76%
See 1 more Smart Citation
“…Similar conclusions were obtained when streptavidin-coated spheres were made to interact with biotinylated surfaces [11]. Transient binding states were observed under conditions where the forces imposed on bonds varied between 3.5 and 11 pN.…”
Section: Dissection Of Single Molecular Bonds With a Flow Chambersupporting
confidence: 76%
“…Probably the laminar flow chamber is most effective in revealing the properties of the external part of the energy landscape [11], since it allows to probe bonds within a millisecond after formation, subjecting them to forces as low as a few piconewtons.…”
Section: Dissecting Individual Bonds With Atomic Force Microscopy or mentioning
confidence: 99%
“…as has been reported before for similar experimental setups [16,23]. The Poisson distribution contains the single parameter λ which determines the average number of broken bonds as…”
Section: Methodsmentioning
confidence: 67%
“…Experimentally, the streptavidin-biotin system is the best studied example for molecular bonding. In detail, it has been investigated with AFM [4], BFP [8] and flow chambers [16]. In the latter case, multiple bonds have been probed, but a persistent problem with flow chambers is that force is distributed in a heterogeneous way over the different bonds, thus rendering a quantitative analysis difficult.…”
Section: Introductionmentioning
confidence: 99%
“…A number of methods, such as hydrodynamic-flow-based method, 3 laser tweezers 4 and atomic force microscopy (AFM), 5 have been invented to investigate the interaction force between two different molecules, between a cell surface and a molecule, or between two different cells.…”
mentioning
confidence: 99%