keyword
https://read.qxmd.com/read/38641901/temporal-focusing-multiphoton-excitation-single-molecule-localization-microscopy-using-spontaneously-blinking-fluorophores
#21
JOURNAL ARTICLE
Jian-Zong Lai, Chun-Yu Lin, Shean-Jen Chen, Yu-Min Cheng, Manabu Abe, Tzu-Chau Lin, Fan-Ching Chien
Single-molecule localization microscopy (SMLM) based on temporal-focusing multiphoton excitation (TFMPE) and single-wavelength excitation is used to visualize the three-dimensional (3D) distribution of spontaneously blinking fluorophore-labeled subcellular structures in a thick specimen with a nanoscale-level spatial resolution. To eliminate the photobleaching effect of unlocalized molecules in out-of-focus regions for improving the utilization rate of the photon budget in 3D SMLM imaging, SMLM with single-wavelength TFMPE achieves wide-field and axially confined two-photon excitation (TPE) of spontaneously blinking fluorophores...
April 19, 2024: Angewandte Chemie
https://read.qxmd.com/read/38640894/sequential-requirements-for-distinct-pol%C3%AE-domains-during-theta-mediated-end-joining
#22
JOURNAL ARTICLE
Carel Fijen, Lea Drogalis Beckham, Dante Terino, Yuzhen Li, Dale A Ramsden, Richard D Wood, Sylvie Doublié, Eli Rothenberg
DNA polymerase θ (Polθ) plays a central role in a DNA double-strand break repair pathway termed theta-mediated end joining (TMEJ). TMEJ functions by pairing short-sequence "microhomologies" (MHs) in single-stranded DNA at each end of a break and subsequently initiating DNA synthesis. It is not known how the Polθ helicase domain (HD) and polymerase domain (PD) operate to bring together MHs and facilitate repair. To resolve these transient processes in real time, we utilized in vitro single-molecule FRET approaches and biochemical analyses...
April 18, 2024: Molecular Cell
https://read.qxmd.com/read/38640250/from-brownian-to-deterministic-motor-movement-in-a-dna-based-molecular-rotor
#23
JOURNAL ARTICLE
Florian Rothfischer, Matthias Vogt, Enzo Kopperger, Ulrich Gerland, Friedrich C Simmel
Molecular devices that have an anisotropic periodic potential landscape can be operated as Brownian motors. When the potential landscape is cyclically switched with an external force, such devices can harness random Brownian fluctuations to generate a directed motion. Recently, directed Brownian motor-like rotatory movement was demonstrated with an electrically switched DNA origami rotor with designed ratchet-like obstacles. Here, we demonstrate that the intrinsic anisotropy of DNA origami rotors is also sufficient to result in motor movement...
April 19, 2024: Nano Letters
https://read.qxmd.com/read/38639484/analysis-of-the-effect-of-cations-on-protein-conformational-stability-using-solid-state-nanopores
#24
JOURNAL ARTICLE
Libo Zhu, Hongwen Wu, Zhengyuan Xu, Lanying Guo, Jinsong Zhao
The conformation of proteins is closely related to their biological functions, and it is affected by many factors, including the type of cations in solution. However, it is difficult to detect the conformational changes of a protein in situ . As a single-molecule sensing technology, nanopores can convert molecular structural information into analyzable current signals within a reasonable time range. Herein, we detect and analyze the effects of two different types of monovalent cations (Na+ and Li+ ) on a model protein bovine serum albumin (BSA) conformation using SiN x nanopores with different diameters...
April 19, 2024: Analyst
https://read.qxmd.com/read/38639403/single-molecule-electrical-profiling-of-peptides-and-proteins
#25
REVIEW
Hongyu Ju, Li Cheng, Mengmeng Li, Kunrong Mei, Suhang He, Chuancheng Jia, Xuefeng Guo
In recent decades, there has been a significant increase in the application of single-molecule electrical analysis platforms in studying proteins and peptides. These advanced analysis methods have the potential for deep investigation of enzymatic working mechanisms and accurate monitoring of dynamic changes in protein configurations, which are often challenging to achieve in ensemble measurements. In this work, the prominent research progress in peptide and protein-related studies are surveyed using electronic devices with single-molecule/single-event sensitivity, including single-molecule junctions, single-molecule field-effect transistors, and nanopores...
April 19, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38639398/expanding-the-palette-of-swir-emitting-nanoparticles-based-on-au-nanoclusters-for-single-particle-tracking-microscopy
#26
JOURNAL ARTICLE
Apolline A Simon, Lucie Haye, Abdallah Alhalabi, Quentin Gresil, Blanca Martín Muñoz, Stéphane Mornet, Andreas Reisch, Xavier Le Guével, Laurent Cognet
Single-molecule localization microscopy has proved promising to unravel the dynamics and molecular architecture of thin biological samples down to nanoscales. For applications in complex, thick biological tissues shifting single-particle emission wavelengths to the shortwave infrared (SWIR also called NIR II) region between 900 to 2100 nm, where biological tissues are more transparent is key. To date, mainly single-walled carbon nanotubes (SWCNTs) enable such applications, but they are inherently 1D objects...
April 19, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38639061/ligand-dependent-folding-and-unfolding-dynamics-and-free-energy-landscapes-of-acylphosphatase
#27
JOURNAL ARTICLE
Li Yuan, Hao Sun, Xuening Ma, Yang Wang, Zilong Guo, Xingyu Qi, Shimin Le, Hu Chen
Acylphosphatase (AcP) is an enzyme which catalyses the hydrolysis of acylphosphate. The binding with the phosphate ion (Pi) assumes significance in preserving both the stability and enzymatic activity of AcP. While previous studies using single molecule force spectroscopy explored the mechanical properties of AcP, the influence of Pi on its folding and unfolding dynamic behaviors remains unexplored. In this work, using stable magnetic tweezers, we measured and compared the force-dependent folding and unfolding rates of AcP in the Tris buffer and phosphate buffer within a force range from 2 pN to 40 pN...
April 19, 2024: Soft Matter
https://read.qxmd.com/read/38638321/single-molecule-studies-of-dynamic-platelet-interactions-with-endothelial-cells
#28
JOURNAL ARTICLE
Fabian Hauser, Christoph Naderer, Eleni Priglinger, Anja Peterbauer, Michael B Fischer, Heinz Redl, Jaroslaw Jacak
A biotechnological platform consisting of two-color 3D super-resolution readout and a microfluidic system was developed to investigate platelet interaction with a layer of perfused endothelial cells under flow conditions. Platelet activation has been confirmed via CD62P clustering on the membrane and mitochondrial morphology of ECs at the single cell level were examined using 3D two-color single-molecule localization microscopy and classified applying machine learning. To compare binding of activated platelets to intact or stressed ECs, a femtosecond laser was used to induced damage to single ECs within the perfused endothelial layer...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38638213/predicting-valence-tautomerism-in-diverse-cobalt-dioxolene-complexes-elucidation-of-the-role-of-ligands-and-solvent
#29
JOURNAL ARTICLE
F Zahra M Zahir, Moya A Hay, Jett T Janetzki, Robert W Gable, Lars Goerigk, Colette Boskovic
The ability of molecular switches to reversibly interconvert between different forms promises potential applications at the scale of single molecules up to bulk materials. One type of molecular switch comprises cobalt-dioxolene compounds that exhibit thermally-induced valence tautomerism (VT) interconversions between low spin Co(iii)-catecholate (LS-CoIII -cat) and high spin Co(ii)-semiquinonate (HS-CoII -sq) forms. Two families of these compounds have been investigated for decades but have generally been considered separately: neutral [Co(diox)(sq)(N2 L)] and cationic [Co(diox)(N4 L)]+ complexes (diox = generic dioxolene, N2 L/N4 L = bidentate/tetradentate N-donor ancillary ligand)...
April 17, 2024: Chemical Science
https://read.qxmd.com/read/38637518/detecting-m-6-a-at-single-molecular-resolution-via-direct-rna-sequencing-and-realistic-training-data
#30
JOURNAL ARTICLE
Adrian Chan, Isabel S Naarmann-de Vries, Carolin P M Scheitl, Claudia Höbartner, Christoph Dieterich
Direct RNA sequencing offers the possibility to simultaneously identify canonical bases and epi-transcriptomic modifications in each single RNA molecule. Thus far, the development of computational methods has been hampered by the lack of biologically realistic training data that carries modification labels at molecular resolution. Here, we report on the synthesis of such samples and the development of a bespoke algorithm, mAFiA (m6 A Finding Algorithm), that accurately detects single m6 A nucleotides in both synthetic RNAs and natural mRNA on single read level...
April 18, 2024: Nature Communications
https://read.qxmd.com/read/38637051/experimental-investigation-of-confinement-effect-in-single-molecule-amplification-via-real-time-digital-pcr-on-a-multivolume-droplet-array-slipchip
#31
JOURNAL ARTICLE
Yang Luo, Qixin Hu, Yan Yu, Weiyuan Lyu, Feng Shen
BACKGROUND: Digital polymerase chain reaction (digital PCR) is an important quantitative nucleic acid analysis method in both life science research and clinical diagnostics. One important hypothesis is that by physically constraining a single nucleic acid molecule in a small volume, the relative concentration can be increased therefore further improving the analysis performance, and this is commonly defined as the confinement effect in digital PCR. However, experimental investigation of this confinement effect can be challenging since it requires a microfluidic device that can generate partitions of different volumes and an instrument that can monitor the kinetics of amplification...
May 22, 2024: Analytica Chimica Acta
https://read.qxmd.com/read/38636323/serum-neurofilament-light-chain-inflammatory-markers-and-kynurenine-metabolites-in-patients-with-persistent-post-concussion-symptoms-a-cohort-study
#32
JOURNAL ARTICLE
Peter Preben Eggertsen, Johan Palmfeldt, Asger Roer Pedersen, Oana-Veronica Frederiksen, Rikke Katrine Jentoft Olsen, Jørgen Feldbæk Nielsen
BACKGROUND: Concussion leads to persistent post-concussion symptoms (PPCS) in up to one-third of those affected. While previous research has linked the initial trauma to elevated serum levels of neurofilament light chain (NFL), inflammatory markers, and neurotoxic metabolites within the kynurenine pathway, few studies have explored their relevance in PPCS. This study aims to investigate these biomarkers in PPCS patients, elucidating their relevance in the prolonged phase of concussion...
April 15, 2024: Journal of the Neurological Sciences
https://read.qxmd.com/read/38635928/14-3-3%C3%AF-as-a-modulator-of-early-%C3%AE-synuclein-multimerization-and-amyloid-formation
#33
JOURNAL ARTICLE
Gobert Heesink, Maxime C M van den Oetelaar, Slav A Semerdzhiev, Christian Ottmann, Luc Brunsveld, Christian Blum, Mireille M A E Claessens
The aggregation of α-synuclein (αS) plays a key role in Parkinson's disease (PD) etiology. While the onset of PD is age-related, the cellular quality control system appears to regulate αS aggregation throughout most human life. Intriguingly, the protein 14-3-3τ has been demonstrated to delay αS aggregation and the onset of PD in various models. However, the molecular mechanisms behind this delay remain elusive. Our study confirms the delay in αS aggregation by 14-3-3τ, unveiling a concentration-dependent relation...
April 18, 2024: ACS Chemical Neuroscience
https://read.qxmd.com/read/38634798/examining-chromatin-heterogeneity-through-pacbio-long-read-sequencing-of-m-ecogii-methylated-genomes-an-m6a-detection-efficiency-and-calling-bias-correcting-pipeline
#34
JOURNAL ARTICLE
Allison F Dennis, Zhuwei Xu, David J Clark
Recent studies have combined DNA methyltransferase footprinting of genomic DNA in nuclei with long-read sequencing, resulting in detailed chromatin maps for multi-kilobase stretches of genomic DNA from one cell. Theoretically, nucleosome footprints and nucleosome-depleted regions can be identified using M.EcoGII, which methylates adenines in any sequence context, providing a high-resolution map of accessible regions in each DNA molecule. Here, we report PacBio long-read sequence data for budding yeast nuclei treated with M...
April 18, 2024: Nucleic Acids Research
https://read.qxmd.com/read/38634566/smart-biointerfaces-via-click-chemistry-enabled-nanopatterning-of-multiple-bioligands-and-dna-force-sensors
#35
JOURNAL ARTICLE
Ali Shahrokhtash, Duncan S Sutherland
Nanoscale biomolecular placement is crucial for advancing cellular signaling, sensor technology, and molecular interaction studies. Despite this, current methods fall short in enabling large-area nanopatterning of multiple biomolecules while minimizing nonspecific interactions. Using bioorthogonal tags at a submicron scale, we introduce a novel hole-mask colloidal lithography method for arranging up to three distinct proteins, DNA, or peptides on large, fully passivated surfaces. The surfaces are compatible with single-molecule fluorescence microscopy and microplate formats, facilitating versatile applications in cellular and single-molecule assays...
April 18, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38632403/stepwise-activation-of-a-metabotropic-glutamate-receptor
#36
JOURNAL ARTICLE
Kaavya Krishna Kumar, Haoqing Wang, Chris Habrian, Naomi R Latorraca, Jun Xu, Evan S O'Brien, Chensong Zhang, Elizabeth Montabana, Antoine Koehl, Susan Marqusee, Ehud Y Isacoff, Brian K Kobilka
Metabotropic glutamate receptors belong to a family of G protein-coupled receptors that are obligate dimers and possess a large extracellular ligand-binding domain that is linked via a cysteine-rich domain to their 7-transmembrane domain1 . Upon activation, these receptors undergo a large conformational change to transmit the ligand binding signal from the extracellular ligand-binding domain to the G protein-coupling 7-transmembrane domain2 . In this manuscript, we propose a model for a sequential, multistep activation mechanism of metabotropic glutamate receptor subtype 5...
April 17, 2024: Nature
https://read.qxmd.com/read/38632399/digital-colloid-enhanced-raman-spectroscopy-by-single-molecule-counting
#37
JOURNAL ARTICLE
Xinyuan Bi, Daniel M Czajkowsky, Zhifeng Shao, Jian Ye
Quantitative detection of various molecules at very low concentrations in complex mixtures has been the main objective in many fields of science and engineering, from the detection of cancer-causing mutagens and early disease markers to environmental pollutants and bioterror agents1-5 . Moreover, technologies that can detect these analytes without external labels or modifications are extremely valuable and often preferred6 . In this regard, surface-enhanced Raman spectroscopy can detect molecular species in complex mixtures on the basis only of their intrinsic and unique vibrational signatures7 ...
April 17, 2024: Nature
https://read.qxmd.com/read/38632360/hs-afm-single-molecule-structural-biology-uncovers-basis-of-transporter-wanderlust-kinetics
#38
JOURNAL ARTICLE
Yining Jiang, Atsushi Miyagi, Xiaoyu Wang, Biao Qiu, Olga Boudker, Simon Scheuring
The Pyrococcus horikoshii amino acid transporter GltPh revealed, like other channels and transporters, activity mode switching, previously termed wanderlust kinetics. Unfortunately, to date, the basis of these activity fluctuations is not understood, probably due to a lack of experimental tools that directly access the structural features of transporters related to their instantaneous activity. Here, we take advantage of high-speed atomic force microscopy, unique in providing simultaneous structural and temporal resolution, to uncover the basis of kinetic mode switching in proteins...
April 17, 2024: Nature Structural & Molecular Biology
https://read.qxmd.com/read/38632088/using-f%C3%A3-rster-resonance-energy-transfer-fret-to-understand-the-ubiquitination-landscape
#39
JOURNAL ARTICLE
Jashanjot Kaur Gill, Gary Shaw
Förster resonance energy transfer (FRET) is a fluorescence technique that allows quantitative measurement of protein interactions, kinetics and dynamics. This review covers the use of FRET to study the structures and mechanisms of ubiquitination and related proteins. We survey FRET assays that have been developed where donor and acceptor fluorophores are placed on E1, E2 or E3 enzymes and ubiquitin (Ub) to monitor steady-state and real-time transfer of Ub through the ubiquitination cascade. Specialized FRET probes placed on Ub and Ub-like proteins have been developed to monitor Ub removal by deubiquitinating enzymes (DUBs) that result in a loss of a FRET signal upon cleavage of the FRET probes...
April 17, 2024: Chembiochem: a European Journal of Chemical Biology
https://read.qxmd.com/read/38630222/reconstitution-of-neuronal-motor-traffic-on-septin-associated-microtubules
#40
JOURNAL ARTICLE
Yani Suber, Elias T Spiliotis
Reconstitution of intracellular transport in cell-free in vitro assays enables the understanding and dissection of the molecular mechanisms that underlie membrane traffic. Using total internal reflection fluorescence (TIRF) microscopy and microtubules, which are immobilized to a functionalized glass surface, the kinetic properties of single kinesin molecules can be imaged and analyzed in the presence or absence of microtubule-associated proteins. Here, we describe methods for the in vitro reconstitution of the motility of the neuronal kinesin motor KIF1A on microtubules associated with heteromeric septin (SEPT2/6/7) complexes...
2024: Methods in Molecular Biology
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