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A 2'FY-RNA Motif Defines an Aptamer for Ebolavirus Secreted Protein. | LitMetric

AI Article Synopsis

  • Nucleic acid aptamers are stable for long-term storage and can be used repeatedly, making them suitable for sensors in remote areas, especially for quickly detecting ebolavirus outbreaks.
  • The soluble glycoprotein (sGP) from ebolaviruses serves as a key biomarker, being produced early in infections and detectable in the bloodstream.
  • The study introduces a modified RNA aptamer, 39SGP1A, that specifically binds to sGP through a unique recognition sequence, indicating its potential for effective ebolavirus detection in sensor applications.

Article Abstract

With properties such as stability to long-term storage and amenability to repetitive use, nucleic acid aptamers are compatible with many sensing/transducing platforms intended for use in remote locations. Sensors with these properties are important for quickly identifying ebolavirus outbreaks, which frequently start in locations that lack sophisticated equipment. Soluble glycoprotein (sGP), an excellent biomarker for ebolaviruses, is produced from the same gene as the ebolavirus glycoprotein GP1,2 that decorates the surface of the viral particle and is secreted in abundance into the blood stream even during the early stages of infection. Here, we report the selection and properties of a 2'fluoro pyrimidine (2'FY)-modified RNA aptamer, 39SGP1A, that specifically binds sGP. We demonstrate by computational and biochemical analysis that the recognition motif of 39SGP1A is a novel polypyrimidine-rich sequence. Replacement of -F by -OH in the 2' position of the ribose resulted in complete loss of affinity for sGP. The protein motif to which the aptamer binds requires an intact sGP dimer and binds to an epitope conserved between Ebola virus (EBOV) and Sudan virus (SUDV) sGP, the most divergent Ebolavirus species. This identifies 39SGP1A as an excellent option for integration on a sensor platform to detect ebolavirus infections.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6098113PMC
http://dx.doi.org/10.1038/s41598-018-30590-8DOI Listing

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