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A Nanopore Sensor for Multiplexed Detection of Short Polynucleotides Based on Length-Variable, Poly-Arginine-Conjugated Peptide Nucleic Acids.
Mereuta, Loredana; Asandei, Alina; Dragomir, Isabela; Park, Jonggwan; Park, Yoonkyung; Luchian, Tudor.
  • Mereuta L; Department of Physics, Alexandru I. Cuza University, 700506 Iasi, Romania.
  • Asandei A; Interdisciplinary Research Institute, Sciences Department, Alexandru I. Cuza University, 700506 Iasi, Romania.
  • Dragomir I; Interdisciplinary Research Institute, Sciences Department, Alexandru I. Cuza University, 700506 Iasi, Romania.
  • Park J; Department of Bioinformatics, Kongju National University, 38065 Kongju, Republic of Korea.
  • Park Y; Department of Biomedical Science and Research Center for Proteinaceous Materials (RCPM), Chosun University, 61452 Gwangju, Republic of Korea.
  • Luchian T; Department of Physics, Alexandru I. Cuza University, 700506 Iasi, Romania.
Anal Chem ; 94(24): 8774-8782, 2022 06 21.
Article in English | MEDLINE | ID: covidwho-1878479
ABSTRACT
Real-time and easy-to-use detection of nucleic acids is crucial for many applications, including medical diagnostics, genetic screening, forensic science, or monitoring the onset and progression of various diseases. Herein, an exploratory single-molecule approach for multiplexed discrimination among similar-sized single-stranded DNAs (ssDNA) is presented. The underlying strategy combined (i) a method based on length-variable, short arginine (poly-Arg) tags appended to peptide nucleic acid (PNA) probes, designed to hybridize with selected regions from complementary ssDNA targets (cDNA) in solution and (ii) formation and subsequent detection with the α-hemolysin nanopore of (poly-Arg)-PNA-cDNA duplexes containing two overhangs associated with the poly-Arg tail and the non-hybridized segment from ssDNA. We discovered that the length-variable poly-Arg tail marked distinctly the molecular processes associated with the nanopore-mediated duplexes capture, trapping and unzipping. This enabled the detection of ssDNA targets via the signatures of (poly-Arg)-PNA-cDNA blockade events, rendered most efficient from the ß-barrel entrance of the nanopore, and scaled proportional in efficacy with a larger poly-Arg moiety. We illustrate the approach by sensing synthetic ssDNAs designed to emulate fragments from two regions of SARS-CoV-2 nucleocapsid phosphoprotein N-gene.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Peptide Nucleic Acids / Nanopores / COVID-19 Type of study: Diagnostic study Limits: Humans Language: English Journal: Anal Chem Year: 2022 Document Type: Article Affiliation country: Acs.analchem.2c01587

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Peptide Nucleic Acids / Nanopores / COVID-19 Type of study: Diagnostic study Limits: Humans Language: English Journal: Anal Chem Year: 2022 Document Type: Article Affiliation country: Acs.analchem.2c01587