The functional role of loops and flanking sequences of G-quadruplex aptamer to the hemagglutinin of influenza a virus

18Citations
Citations of this article
30Readers
Mendeley users who have this article in their library.

Abstract

Nucleic acid aptamers are generally accepted as promising elements for the specific and high-affinity binding of various biomolecules. It has been shown for a number of aptamers that the complexes with several related proteins may possess a similar affinity. An outstanding example is the G-quadruplex DNA aptamer RHA0385, which binds to the hemagglutinins of various influenza A virus strains. These hemagglutinins have homologous tertiary structures but moderate-to-low amino acid sequence identities. Here, the experiment was inverted, targeting the same protein using a set of related, parallel G-quadruplexes. The 5′-and 3′-flanking sequences of RHA0385 were truncated to yield parallel G-quadruplex with three propeller loops that were 7, 1, and 1 nucleotides in length. Next, a set of minimal, parallel G-quadruplexes with three single-nucleotide loops was tested. These G-quadruplexes were characterized both structurally and functionally. All parallel Gquadruplexes had affinities for both recombinant hemagglutinin and influenza virions. In summary, the parallel G-quadruplex represents a minimal core structure with functional activity that binds influenza A hemagglutinin. The flanking sequences and loops represent additional features that can be used to modulate the affinity. Thus, the RHA0385–hemagglutinin complex serves as an excellent example of the hypothesis of a core structure that is decorated with additional recognizing elements capable of improving the binding properties of the aptamer.

Cite

CITATION STYLE

APA

Bizyaeva, A. A., Bunin, D. A., Moiseenko, V. L., Gambaryan, A. S., Balk, S., Tashlitsky, V. N., … Zavyalova, E. G. (2021). The functional role of loops and flanking sequences of G-quadruplex aptamer to the hemagglutinin of influenza a virus. International Journal of Molecular Sciences, 22(5), 1–15. https://doi.org/10.3390/ijms22052409

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free