Searched for: subject%3A%22Single%255C-molecule%22
(1 - 11 of 11)
document
Filius, M. (author), van Wee, R.G. (author), Joo, C. (author)
Fluorescence resonance energy transfer (FRET) is a photophysical phenomenon that has been repurposed as a biophysical tool to measure nanometer distances. With FRET by DNA eXchange, or FRET X, many points of interest (POIs) in a single object can be probed, overcoming a major limitation of conventional single-molecule FRET. In FRET X, short...
book chapter 2023
document
Kim, B. (author), Ha, M. (author), Loeff, L. (author), Chang, H. (author), Simanshu, D.K. (author), Li, S. (author), Fareh, M. (author), Patel, D.J. (author), Joo, C. (author), Kim, V.N. (author)
Terminal uridylyl transferases (TUTs) function as integral regulators of microRNA (miRNA) biogenesis. Using biochemistry, single-molecule, and deep sequencing techniques, we here investigate the mechanism by which human TUT7 (also known as ZCCHC6) recognizes and uridylates precursor miRNAs (pre-miRNAs) in the absence of Lin28. We find that the...
journal article 2015
document
Yao, Y. (author), Docter, M. (author), De Ridder, D. (author), Joo, C. (author)
Proteins are vital in all biological systems as they constitute the main structural and functional components of cells. Recent advances in mass spectrometry have brought the promise of complete proteomics by helping draft the human proteome. Yet, this commonly used protein sequencing technique has fundamental limitations in sensitivity. Here we...
journal article 2015
document
Loeff, L. (author), Kerssemakers, J.W.J. (author), Joo, C. (author), Dekker, C. (author)
Single-molecule techniques allow the visualization of the molecular dynamics of nucleic acids and proteins with high spatiotemporal resolution. Valuable kinetic information of biomolecules can be obtained when the discrete states within single-molecule time trajectories are determined. Here, we present a fast, automated, and bias-free step...
journal article 2021
document
Filius, M. (author), Kim, S.H. (author), Severins, I.W.H. (author), Joo, C. (author)
Single-molecule FRET is a versatile tool to study nucleic acids and proteins at the nanometer scale. However, currently, only a couple of FRET pairs can be reliably measured on a single object, which makes it difficult to apply single-molecule FRET for structural analysis of biomolecules. Here, we present an approach that allows for the...
journal article 2021
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Klein, M. (author), Chandradoss, S.D. (author), Depken, S.M. (author), Joo, C. (author)
MicroRNA (miRNA) interferes with the translation of cognate messenger RNA (mRNA) by finding, preferentially binding, and marking it for degradation. To facilitate the search process, Argonaute (Ago) proteins come together with miRNA, forming a dynamic search complex. In this review we use the language of free-energy landscapes to discuss...
journal article 2017
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Fareh, M. (author), Loeff, L. (author), Szczepaniak, M. (author), van Eijkeren-Haagsma, A.C. (author), Yeom, K.H. (author), Joo, C. (author)
The genome and transcriptome are constantly modified by proteins in the cell. Recent advances in single-molecule techniques allow for high spatial and temporal observations of these interactions between proteins and nucleic acids. However, due to the difficulty of obtaining functional protein complexes, it remains challenging to study the...
journal article 2016
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Restrepo Perez, L. (author), Huang, Gang (author), Bohländer, Peggy R. (author), Worp, N.M. (author), Eelkema, R. (author), Maglia, Giovanni (author), Joo, C. (author), Dekker, C. (author)
While DNA sequencing is now amply available, fast, and inexpensive, protein sequencing remains a tremendous challenge. Nanopores may allow for developing a protein sequencer with single-molecule capabilities. As identification of 20 different amino acids currently presents an unsurmountable challenge, fingerprinting schemes are pursued, in...
journal article 2019
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Filius, M. (author), Cui, T.J. (author), Ananth, A.N. (author), Docter, M.W. (author), Hegge, Jorrit W. (author), van der Oost, John (author), Joo, C. (author)
Super-resolution imaging allows for the visualization of cellular structures on a nanoscale level. DNA-PAINT (DNA point accumulation in nanoscale topology) is a super-resolution method that depends on the binding and unbinding of DNA imager strands. The current DNA-PAINT technique suffers from slow acquisition due to the low binding rate of...
journal article 2020
document
van Wee, R.G. (author), Filius, M. (author), Joo, C. (author)
Single-molecule localization microscopy (SMLM) is a potent tool to examine biological systems with unprecedented resolution, enabling the investigation of increasingly smaller structures. At the forefront of these developments is DNA-based point accumulation for imaging in nanoscale topography (DNA-PAINT), which exploits the stochastic and...
review 2021
document
Severins, I.W.H. (author), Joo, C. (author), van Noort, John (author)
Next-generation sequencing techniques have led to a new quantitative dimension in the biological sciences. In particular, integrating sequencing techniques with biophysical tools allows sequence-dependent mechanistic studies. Using the millions of DNA clusters that are generated during sequencing to perform high-throughput binding affinity...
review 2022
Searched for: subject%3A%22Single%255C-molecule%22
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