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PMID: 9468610 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Imaging and nano-manipulation of single biomolecules.

Biophysical chemistry ·Vol. 68 ·No. 1-3 ·1997-10-00 ·Pages 63-72

Funatsu T, Harada Y, Higuchi H, Tokunaga M, Saito K, Ishii Y, Vale RD, Yanagida T

Abstract

We have developed a new technique for imaging single fluorescent dye molecules by refining epifluorescence and total internal reflection fluorescence microscopies. In contrast to previously reported single fluorescent molecule imaging methods, in which specimens were immobilized on an air-dried surface, our method enables video-rate imaging of single molecules in aqueous solution. This approach enabled us to directly image the processive movement of individual fluorescently labeled kinesin molecules along a microtubule. This method was also used to visualize individual ATP turnover reactions of single myosin molecules. The method can be combined with molecular manipulation using an optical trap. A single kinesin molecule attached to a polystyrene bead was brought into contact with a microtubule adsorbed onto the glass surface. The lifetime of bound Cy3-nucleotide in the absence or presence of the microtubule was 10 s or 0.08 s, respectively, showing that ATPase activity of the kinesin is strongly activated by microtubules. As the present system is equipped with a nanometer sensor, elemental steps of a single kinesin molecule can also be measured. By simultaneously measuring the individual ATP turnovers and elementary mechanical events of a single kinesin molecule, we will be able to obtain a clear answer to the fundamental problem of how the mechanical events are coupled to the ATPase reaction.

MeSH Terms
Adenosine Triphosphate/metabolism Fluorescent Dyes/analysis Humans Image Processing, Computer-Assisted/methods Kinesins/metabolism Microscopy, Fluorescence/methods Microtubules/metabolism Myosins/metabolism Optics and Photonics Solutions
Chemicals
Fluorescent Dyes Solutions Adenosine Triphosphate Myosins Kinesins
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Funatsu T
Yanagida Biomotron Project, ERATO, JST, Osaka, Japan. funatsu@yanagida.jstc.go.jp
Harada Y
Higuchi H
Tokunaga M
Saito K
Ishii Y
Vale R D
Yanagida T
Article Info
Journal
Biophysical chemistry
Abbr.
Biophys Chem
ISSN
0301-4622
Published
1997-10-00
Pages
63-72
Language
English
Region
Netherlands
NLM ID
0403171
Subset
IM
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