Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Fluorescent Sensor for PH Monitoring Based on an i-Motif- – Switching Aptamer Containing a Tricyclic Cytosine Analogue (tC)

View through CrossRef
There are cytosine-rich regions in the genome that bind protons with high specificity. Thus protonated C-rich sequence may undergo folding to tetraplex structures called i-motifs. Therefore, one can regard such specific C-rich oligonucleotides as aptamers that recognize protons and undergo conformational transitions. Proper labeling of the aptamer with a fluorescent tag constitutes a platform to construct a pH-sensitive aptasensor. Since the hemiprotonated C-C+ base pairs are responsible for the folded tetraplex structure of i-motif, we decided to substitute one of cytosines in an aptamer sequence with its fluorescent analogue, 1,3-diaza-2-oxophenothiazine (tC). In this paper we report on three tC-modified fluorescent probes that contain RET related sequences as a proton recognizing aptamer. Results of the circular dichroism (CD), UV absorption melting experiments, and steady-state fluorescence measurements of these tC-modified i-motif probes are presented and discussed. The pH-induced i-motif formation by the probes resulted in fluorescence quenching of tC fluorophore. Efficiency of quenching was related to the pH variations. Suitability of the sensor for monitoring pH changes was also demonstrated.
Title: Fluorescent Sensor for PH Monitoring Based on an i-Motif- – Switching Aptamer Containing a Tricyclic Cytosine Analogue (tC)
Description:
There are cytosine-rich regions in the genome that bind protons with high specificity.
Thus protonated C-rich sequence may undergo folding to tetraplex structures called i-motifs.
Therefore, one can regard such specific C-rich oligonucleotides as aptamers that recognize protons and undergo conformational transitions.
Proper labeling of the aptamer with a fluorescent tag constitutes a platform to construct a pH-sensitive aptasensor.
Since the hemiprotonated C-C+ base pairs are responsible for the folded tetraplex structure of i-motif, we decided to substitute one of cytosines in an aptamer sequence with its fluorescent analogue, 1,3-diaza-2-oxophenothiazine (tC).
In this paper we report on three tC-modified fluorescent probes that contain RET related sequences as a proton recognizing aptamer.
Results of the circular dichroism (CD), UV absorption melting experiments, and steady-state fluorescence measurements of these tC-modified i-motif probes are presented and discussed.
The pH-induced i-motif formation by the probes resulted in fluorescence quenching of tC fluorophore.
Efficiency of quenching was related to the pH variations.
Suitability of the sensor for monitoring pH changes was also demonstrated.

Related Results

Dynamic stochastic modeling for inertial sensors
Dynamic stochastic modeling for inertial sensors
Es ampliamente conocido que los modelos de error para sensores inerciales tienen dos componentes: El primero es un componente determinista que normalmente es calibrado por el fabri...
Regulatory context drives conservation of glycine riboswitch aptamers
Regulatory context drives conservation of glycine riboswitch aptamers
Abstract In comparison to protein coding sequences, the impact of mutation and natural selection on the sequence and function of non-coding (ncRNA) genes is not wel...
Uncovering Adenosine‐Specific Signals: A Label‐Free Aptamer‐Based Approach with Gold Nanoparticles for Specific Detection
Uncovering Adenosine‐Specific Signals: A Label‐Free Aptamer‐Based Approach with Gold Nanoparticles for Specific Detection
AbstractWe present a novel colorimetric aptasensing method for specific adenosine (Ade) detection based on complementary aptamer hybridization and gold nanoparticles (AuNPs). Unlik...
The Discrepancy between Clove and Non-Clove Cigarette Smoke-Promoted Candida albicans Biofilm Formation with Precoating RNA-aptamer
The Discrepancy between Clove and Non-Clove Cigarette Smoke-Promoted Candida albicans Biofilm Formation with Precoating RNA-aptamer
This study explores the influence of precoating aptamer (Ca-apt1) on C. albicans viability while the fungus was growing in the presence of exposing condensed cigarette smoke (CSC),...
The Discrepancy between Clove and Non-Clove Cigarette Smoke-Promoted Candida albicans Biofilm Formation with Precoating RNA-aptamer
The Discrepancy between Clove and Non-Clove Cigarette Smoke-Promoted Candida albicans Biofilm Formation with Precoating RNA-aptamer
This study explores the influence of precoating aptamer (Ca-apt1) on C. albicans viability while the fungus was growing in the presence of exposing condensed cigarette smoke (CSC),...
The discrepancy between Clove and Non-Clove Cigarette Smoke-Promoted Candida albicans Biofilm Formation with precoating RNA-aptamer
The discrepancy between Clove and Non-Clove Cigarette Smoke-Promoted Candida albicans Biofilm Formation with precoating RNA-aptamer
This study explores the influence of precoating aptamer (Ca-apt1) on C. albicans viability while the fungus was growing in the presence of exposing condensed cigarette smoke (CSC),...
Potential Anti-inflammatory Impact of SIRT1 Activator on RAW 264.7 Cells: In Vitro study
Potential Anti-inflammatory Impact of SIRT1 Activator on RAW 264.7 Cells: In Vitro study
Background: Inflammation serves as the bedrock for a diverse range of physiological and pathological processes. Para-inflammation is the adaptive response that occurs when tissue s...
Marine fishes exhibit exceptional variation in biofluorescent emission spectra
Marine fishes exhibit exceptional variation in biofluorescent emission spectra
AbstractBiofluorescence is a phylogenetically widespread phenomenon among marine fishes, yet the phenotypic diversity in fluorescent emission wavelengths (e.g., green, red) remains...

Back to Top