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Ångström-resolution fluorescence microscopy
by
Reinhardt, Susanne C. M.
, Baudrexel, Isabelle
, Steen, Philipp R.
, Strauss, Sebastian
, Schlichthaerle, Thomas
, Klein, Christian
, Kowalewski, Rafal
, Strauss, Maximilian T.
, Masullo, Luciano A.
, Unterauer, Eduard M.
, Eklund, Alexandra S.
, Jungmann, Ralf
in
14/1
/ 14/63
/ 631/1647/328/2238
/ 631/45/612/1237
/ 631/57/2265
/ 639/766/930/328/2238
/ 639/925/926/1049
/ Antigens, CD20 - analysis
/ Antigens, CD20 - chemistry
/ Biological Science Disciplines - instrumentation
/ Biological Science Disciplines - methods
/ Biological Science Disciplines - standards
/ Biomolecules
/ CD20 antigen
/ Cells - drug effects
/ Cells - metabolism
/ Deoxyribonucleic acid
/ DNA
/ DNA - analysis
/ DNA - chemistry
/ DNA Barcoding, Taxonomic
/ Fluorescence
/ Fluorescence microscopy
/ Humanities and Social Sciences
/ Imaging
/ Immunotherapy
/ Intramolecular structures
/ Localization
/ Microscopy
/ Microscopy, Fluorescence - instrumentation
/ Microscopy, Fluorescence - methods
/ Microscopy, Fluorescence - standards
/ Molecular modelling
/ multidisciplinary
/ Proteins
/ Reagents
/ Science
/ Science (multidisciplinary)
/ Structural analysis
2023
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Ångström-resolution fluorescence microscopy
by
Reinhardt, Susanne C. M.
, Baudrexel, Isabelle
, Steen, Philipp R.
, Strauss, Sebastian
, Schlichthaerle, Thomas
, Klein, Christian
, Kowalewski, Rafal
, Strauss, Maximilian T.
, Masullo, Luciano A.
, Unterauer, Eduard M.
, Eklund, Alexandra S.
, Jungmann, Ralf
in
14/1
/ 14/63
/ 631/1647/328/2238
/ 631/45/612/1237
/ 631/57/2265
/ 639/766/930/328/2238
/ 639/925/926/1049
/ Antigens, CD20 - analysis
/ Antigens, CD20 - chemistry
/ Biological Science Disciplines - instrumentation
/ Biological Science Disciplines - methods
/ Biological Science Disciplines - standards
/ Biomolecules
/ CD20 antigen
/ Cells - drug effects
/ Cells - metabolism
/ Deoxyribonucleic acid
/ DNA
/ DNA - analysis
/ DNA - chemistry
/ DNA Barcoding, Taxonomic
/ Fluorescence
/ Fluorescence microscopy
/ Humanities and Social Sciences
/ Imaging
/ Immunotherapy
/ Intramolecular structures
/ Localization
/ Microscopy
/ Microscopy, Fluorescence - instrumentation
/ Microscopy, Fluorescence - methods
/ Microscopy, Fluorescence - standards
/ Molecular modelling
/ multidisciplinary
/ Proteins
/ Reagents
/ Science
/ Science (multidisciplinary)
/ Structural analysis
2023
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Ångström-resolution fluorescence microscopy
by
Reinhardt, Susanne C. M.
, Baudrexel, Isabelle
, Steen, Philipp R.
, Strauss, Sebastian
, Schlichthaerle, Thomas
, Klein, Christian
, Kowalewski, Rafal
, Strauss, Maximilian T.
, Masullo, Luciano A.
, Unterauer, Eduard M.
, Eklund, Alexandra S.
, Jungmann, Ralf
in
14/1
/ 14/63
/ 631/1647/328/2238
/ 631/45/612/1237
/ 631/57/2265
/ 639/766/930/328/2238
/ 639/925/926/1049
/ Antigens, CD20 - analysis
/ Antigens, CD20 - chemistry
/ Biological Science Disciplines - instrumentation
/ Biological Science Disciplines - methods
/ Biological Science Disciplines - standards
/ Biomolecules
/ CD20 antigen
/ Cells - drug effects
/ Cells - metabolism
/ Deoxyribonucleic acid
/ DNA
/ DNA - analysis
/ DNA - chemistry
/ DNA Barcoding, Taxonomic
/ Fluorescence
/ Fluorescence microscopy
/ Humanities and Social Sciences
/ Imaging
/ Immunotherapy
/ Intramolecular structures
/ Localization
/ Microscopy
/ Microscopy, Fluorescence - instrumentation
/ Microscopy, Fluorescence - methods
/ Microscopy, Fluorescence - standards
/ Molecular modelling
/ multidisciplinary
/ Proteins
/ Reagents
/ Science
/ Science (multidisciplinary)
/ Structural analysis
2023
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Journal Article
Ångström-resolution fluorescence microscopy
2023
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Overview
Fluorescence microscopy, with its molecular specificity, is one of the major characterization methods used in the life sciences to understand complex biological systems. Super-resolution approaches
1
–
6
can achieve resolution in cells in the range of 15 to 20 nm, but interactions between individual biomolecules occur at length scales below 10 nm and characterization of intramolecular structure requires Ångström resolution. State-of-the-art super-resolution implementations
7
–
14
have demonstrated spatial resolutions down to 5 nm and localization precisions of 1 nm under certain in vitro conditions. However, such resolutions do not directly translate to experiments in cells, and Ångström resolution has not been demonstrated to date. Here we introdue a DNA-barcoding method, resolution enhancement by sequential imaging (RESI), that improves the resolution of fluorescence microscopy down to the Ångström scale using off-the-shelf fluorescence microscopy hardware and reagents. By sequentially imaging sparse target subsets at moderate spatial resolutions of >15 nm, we demonstrate that single-protein resolution can be achieved for biomolecules in whole intact cells. Furthermore, we experimentally resolve the DNA backbone distance of single bases in DNA origami with Ångström resolution. We use our method in a proof-of-principle demonstration to map the molecular arrangement of the immunotherapy target CD20 in situ in untreated and drug-treated cells, which opens possibilities for assessing the molecular mechanisms of targeted immunotherapy. These observations demonstrate that, by enabling intramolecular imaging under ambient conditions in whole intact cells, RESI closes the gap between super-resolution microscopy and structural biology studies and thus delivers information key to understanding complex biological systems.
The authors introduce a single-molecule DNA-barcoding method, resolution enhancement by sequential imaging, that improves the resolution of fluorescence microscopy down to the Ångström scale using off-the-shelf fluorescence microscopy hardware and reagents.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 14/63
/ Biological Science Disciplines - instrumentation
/ Biological Science Disciplines - methods
/ Biological Science Disciplines - standards
/ DNA
/ Humanities and Social Sciences
/ Imaging
/ Microscopy, Fluorescence - instrumentation
/ Microscopy, Fluorescence - methods
/ Microscopy, Fluorescence - standards
/ Proteins
/ Reagents
/ Science
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