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1.
Biosens Bioelectron ; 242: 115694, 2023 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-37797531

RESUMO

Circulating tumor DNA (ctDNA) analysis has emerged as a highly promising non-invasive assay for detection and monitoring of cancer. However, identification of multiple point-mutant ctDNAs, particularly at extremely low frequencies in early cancer stages, remains a significant challenge. To address this issue, we present a multiplexed ctDNA detection technique, SIMUL (single-molecule detection of multiple low-frequency mutations). SIMUL involves an unbiased preamplification of both wild-type and mutant DNAs, followed by the detection of mutant DNAs through single-molecule multicolor imaging. SIMUL enables highly sensitive and specific detection of multiple single-nucleotide mutations in a short span of time, even in the presence of 10,000-fold excess of wild-type DNA. Importantly, SIMUL can accurately measure mutant fractions due to its linear correlation between the number of single-molecule spots and the variant allele frequency. This breakthrough technique holds immense potential for clinical applications, offering significant improvements for example in early cancer detection and accurate evaluation of anticancer treatment responses.


Assuntos
Técnicas Biossensoriais , DNA Tumoral Circulante , Neoplasias , Humanos , DNA Tumoral Circulante/genética , Neoplasias/diagnóstico , Neoplasias/genética , Mutação , Biomarcadores Tumorais/genética
2.
Nucleic Acids Res ; 51(1): 337-348, 2023 01 11.
Artigo em Inglês | MEDLINE | ID: mdl-36583333

RESUMO

The determination of the oligomeric state of functional enzymes is essential for the mechanistic understanding of their catalytic activities. RecQ helicases have diverse biochemical activities, but it is still unclear how their activities are related to their oligomeric states. We use single-molecule multi-color fluorescence imaging to determine the oligomeric states of Werner syndrome protein (WRN) during its unwinding and replication fork regression activities. We reveal that WRN binds to a forked DNA as a dimer, and unwinds it without any change of its oligomeric state. In contrast, WRN binds to a replication fork as a tetramer, and is dimerized during activation of replication fork regression. By selectively inhibiting the helicase activity of WRN on specific strands, we reveal how the active dimers of WRN distinctly use the energy of ATP hydrolysis for repetitive unwinding and replication fork regression.


Assuntos
Helicase da Síndrome de Werner , Humanos , Replicação do DNA , Exodesoxirribonucleases/metabolismo , RecQ Helicases/metabolismo , Helicase da Síndrome de Werner/metabolismo
3.
Commun Biol ; 5(1): 1072, 2022 10 07.
Artigo em Inglês | MEDLINE | ID: mdl-36207395

RESUMO

MicroRNAs (miRNAs) are short regulatory RNAs that control gene expression at the post-transcriptional level. Various miRNAs playing important roles in cancer development are emerging as promising diagnostic biomarkers for early cancer detection. Accurate miRNA detection, however, remains challenging because they are small and highly homologous. Recently developed miRNA detection techniques based on single-molecule imaging enabled highly specific miRNA quantification without amplification, but the time required for these techniques to detect a single miRNA was larger than 10 minutes, making rapid profiling of numerous miRNAs impractical. Here we report a rapid miRNA detection technique, dynamic FRET-FISH, in which single-molecule imaging at high probe concentrations and thus high-speed miRNA detection is possible. Dynamic FRET-FISH can detect miRNAs in 10 s at 1.2 µM probe concentration while maintaining the high-specificity of single-nucleotide discrimination. We expect dynamic FRET-FISH will be utilized for early detection of cancers by profiling hundreds of cancer biomarkers in an hour.


Assuntos
MicroRNAs , Biomarcadores Tumorais/genética , Transferência Ressonante de Energia de Fluorescência , MicroRNAs/genética , MicroRNAs/metabolismo , Nucleotídeos
4.
Biochemistry ; 59(47): 4481-4487, 2020 12 01.
Artigo em Inglês | MEDLINE | ID: mdl-33174727

RESUMO

Chromodomain-helicase-DNA-binding protein 1 (CHD1) remodels chromatin by translocating nucleosomes along DNA, but its mechanism remains poorly understood. We use single-molecule fluorescence experiments to clarify the mechanism by which yeast CHD1 (Chd1p) remodels nucleosomes. We find that binding of ATP to Chd1p induces transient unwrapping of the DNA on the exit side of the nucleosome, facilitating nucleosome translocation. ATP hydrolysis is required to induce nucleosome translocation. The unwrapped DNA after translocation is then rewrapped after the release of the hydrolyzed nucleotide and phosphate, revealing that each step of the ATP hydrolysis cycle is responsible for a distinct step of nucleosome remodeling. These results show that Chd1p remodels nucleosomes via a mechanism that is unique among the other ATP-dependent chromatin remodelers.


Assuntos
Trifosfato de Adenosina/metabolismo , Montagem e Desmontagem da Cromatina , Proteínas de Ligação a DNA/fisiologia , DNA/metabolismo , Nucleossomos/metabolismo , Proteínas de Saccharomyces cerevisiae/fisiologia , Animais , Sítios de Ligação/genética , Cromatina/metabolismo , Montagem e Desmontagem da Cromatina/genética , DNA/química , Hidrólise , Ligação Proteica , Transporte Proteico , Saccharomyces cerevisiae , Células Sf9 , Spodoptera
5.
Nat Commun ; 11(1): 6033, 2020 11 27.
Artigo em Inglês | MEDLINE | ID: mdl-33247115

RESUMO

MicroRNAs (miRNAs) are short (19-24 nt) non-coding RNAs that suppress the expression of protein coding genes at the post-transcriptional level. Differential expression profiles of miRNAs across a range of diseases have emerged as powerful biomarkers, making a reliable yet rapid profiling technique for miRNAs potentially essential in clinics. Here, we report an amplification-free multi-color single-molecule imaging technique that can profile purified endogenous miRNAs with high sensitivity, specificity, and reliability. Compared to previously reported techniques, our technique can discriminate single base mismatches and single-nucleotide 3'-tailing with low false positive rates regardless of their positions on miRNA. By preloading probes in Thermus thermophilus Argonaute (TtAgo), miRNAs detection speed is accelerated by more than 20 times. Finally, by utilizing the well-conserved linearity between single-molecule spot numbers and the target miRNA concentrations, the absolute average copy numbers of endogenous miRNA species in a single cell can be estimated. Thus our technique, Ago-FISH (Argonaute-based Fluorescence In Situ Hybridization), provides a reliable way to accurately profile various endogenous miRNAs on a single miRNA sensing chip.


Assuntos
MicroRNAs/análise , MicroRNAs/isolamento & purificação , Sequência de Bases , Linhagem Celular , Humanos , Thermus/genética
6.
Cell Rep ; 23(6): 1831-1839, 2018 05 08.
Artigo em Inglês | MEDLINE | ID: mdl-29742437

RESUMO

Replication fork reversal is one of the major pathways for reactivating stalled DNA replication. Many enzymes with replication fork reversal activity have DNA-unwinding activity as well, but none of the fork reversal enzymes in the SWI/SNF family shows a separate DNA-unwinding activity, raising the question of how they initiate the remodeling process. Here, we found ATP binding to Rad5 induces the unwinding of the leading arm of the replication fork and proximally positions the leading and lagging arms. This facilitates the spontaneous remodeling of the replication fork into a four-way junction. Once the four-way junction is formed, Rad5 migrates the four-way junction at a speed of 7.1 ± 0.14 nt/s. The 3' end anchoring of the leading arm by Rad5's HIRAN domain is critical for both branch migration and the recovery of the three-way junction, but not for the structural transition to the four-way junction.


Assuntos
Trifosfato de Adenosina/metabolismo , DNA Helicases/metabolismo , Replicação do DNA , DNA Cruciforme/metabolismo , Proteínas de Saccharomyces cerevisiae/metabolismo , DNA Helicases/química , Modelos Biológicos , Domínios Proteicos , Proteínas de Saccharomyces cerevisiae/química
7.
Nucleic Acids Res ; 46(9): 4689-4698, 2018 05 18.
Artigo em Inglês | MEDLINE | ID: mdl-29668972

RESUMO

RPA is known to stimulate the helicase activity of Werner syndrome protein (WRN), but the exact stimulation mechanism is not understood. We use single-molecule FRET and magnetic tweezers to investigate the helicase activity of WRN and its stimulation by RPA. We show that WRN alone is a weak helicase which repetitively unwind just a few tens of base pairs, but that binding of multiple RPAs to the enzyme converts WRN into a superhelicase that unidirectionally unwinds double-stranded DNA more than 1 kb. Our study provides a good case in which the activity and biological functions of the enzyme may be fundamentally altered by the binding of cofactors.


Assuntos
Proteína de Replicação A/metabolismo , Helicase da Síndrome de Werner/metabolismo , Transferência Ressonante de Energia de Fluorescência , Humanos
8.
Nucleic Acids Res ; 45(10): 6064-6073, 2017 Jun 02.
Artigo em Inglês | MEDLINE | ID: mdl-28334781

RESUMO

Eukaryotic mRNA decay is tightly modulated by RNA-binding proteins (RBPs) and microRNAs (miRNAs). RBP AU-binding factor 1 (AUF1) has four isoforms resulting from alternative splicing and is critical for miRNA-mediated gene silencing with a distinct preference of target miRNAs. Previously, we have shown that AUF1 facilitates miRNA loading to Argonaute 2 (AGO2), the catalytic component of the RNA-induced silencing complex. Here, we further demonstrate that depletion of AUF1 abolishes the global interaction of miRNAs and AGO2. Single-molecule analysis revealed that AUF1 slowed down assembly of AGO2-let-7b-mRNA complex unexpectedly. However, target mRNAs recognized by both miRNA and AUF1 are less abundant upon AUF1 overexpression implying that AUF1 is a decay-promoting factor influencing multiple steps in AGO2-miRNA-mediated mRNA decay. Our findings indicate that AUF1 functions in promoting miRNA-mediated mRNA decay globally.


Assuntos
Inativação Gênica/fisiologia , Ribonucleoproteínas Nucleares Heterogêneas Grupo D/genética , MicroRNAs/genética , Estabilidade de RNA/fisiologia , Regiões 3' não Traduzidas/genética , Processamento Alternativo , Proteínas Argonautas/metabolismo , Sequência de Bases , Transferência Ressonante de Energia de Fluorescência , Células HeLa , Ribonucleoproteína Nuclear Heterogênea D0 , Humanos , MicroRNAs/metabolismo , Ligação Proteica , Isoformas de Proteínas , Interferência de RNA , RNA Interferente Pequeno/genética , Proteínas Recombinantes/metabolismo
9.
Structure ; 24(8): 1292-1300, 2016 08 02.
Artigo em Inglês | MEDLINE | ID: mdl-27427477

RESUMO

The reactivation of stalled DNA replication via fork regression invokes Holliday junction formation, branch migration, and the recovery of the replication fork after DNA repair or error-free DNA synthesis. The coordination mechanism for these DNA structural transitions by molecular motors, however, remains unclear. Here we perform single-molecule fluorescence experiments with Werner syndrome protein (WRN) and model replication forks. The Holliday junction is readily formed once the lagging arm is unwound, and migrated unidirectionally with 3.2 ± 0.03 bases/s velocity. The recovery of the replication fork was controlled by branch migration reversal of WRN, resulting in repetitive fork regression. The Holliday junction formation, branch migration, and migration direction reversal are all ATP dependent, revealing that WRN uses the energy of ATP hydrolysis to actively coordinate the structural transitions of DNA.


Assuntos
Trifosfato de Adenosina/metabolismo , Replicação do DNA , DNA Cruciforme/química , Proteínas Recombinantes de Fusão/metabolismo , Helicase da Síndrome de Werner/metabolismo , Animais , Pareamento de Bases , Carbocianinas/química , DNA Cruciforme/genética , DNA Cruciforme/metabolismo , Transferência Ressonante de Energia de Fluorescência , Corantes Fluorescentes/química , Expressão Gênica , Humanos , Proteínas Recombinantes de Fusão/genética , Células Sf9 , Imagem Individual de Molécula , Spodoptera , Helicase da Síndrome de Werner/genética
10.
Mol Cell ; 59(1): 117-24, 2015 Jul 02.
Artigo em Inglês | MEDLINE | ID: mdl-26140367

RESUMO

Argonaute is a key enzyme of various RNA silencing pathways. We use single-molecule fluorescence measurements to characterize the reaction mechanisms of the core-RISC (RNA-induced silencing complex) composed of human Argonaute 2 and a small RNA. We found that target binding of core-RISC starts at the seed region, resulting in four distinct reaction pathways: target cleavage, transient binding, stable binding, and Argonaute unloading. The target cleavage requires extensive sequence complementarity and dramatically accelerates core-RISC recycling. The stable binding of core-RISC is efficiently established with the seed match only, providing a potential explanation for the seed-match rule of miRNA (microRNA) target selection. Target cleavage on perfect-match targets sensitively depends on RNA sequences, providing an insight into designing more efficient siRNAs (small interfering RNAs).


Assuntos
Proteínas Argonautas/metabolismo , MicroRNAs/genética , RNA Interferente Pequeno/genética , Complexo de Inativação Induzido por RNA/genética , Sequência de Bases , Fluorescência , Humanos , MicroRNAs/metabolismo , RNA Interferente Pequeno/metabolismo , Complexo de Inativação Induzido por RNA/metabolismo
11.
J Am Chem Soc ; 135(45): 16865-71, 2013 Nov 13.
Artigo em Inglês | MEDLINE | ID: mdl-24175926

RESUMO

Argonaute (Ago) is the catalytic core of small RNA-based gene regulation. Despite plenty of mechanistic studies on Ago, the dynamical aspects and the mechanistic determinants of target mRNA binding and dissociation of Ago-guide strand remain unclear. Here, by using single-molecule fluorescence resonance energy transfer (FRET) assays and Thermus thermophilus Ago (TtAgo), we reveal that the 3'-end of the guide strand dynamically anchors at and releases from the PAZ domain of Ago, and that the 3'-end anchoring of the guide strand greatly accelerates the target dissociation by destabilizing the guide-target duplex. Our results indicate that the target binding/dissociation of Ago-guide is executed through the dynamic interplays among Ago, guide, and target.


Assuntos
Proteínas Argonautas/metabolismo , RNA Mensageiro/metabolismo , Thermus thermophilus/enzimologia , Proteínas Argonautas/química , Sequência de Bases , Transferência Ressonante de Energia de Fluorescência , Ligação Proteica , Estrutura Terciária de Proteína , RNA Mensageiro/química , Thermus thermophilus/química , Thermus thermophilus/metabolismo
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