Search bioRxiv⌕ Search

bioRxiv · 10.64898/2026.06.23.734115

Discover Novel RNA Targeting Small Molecules by Fluorescent Aptamer Screening

Abstract

Discovering small molecules targeting proteins represents a major effort in drug development. RNA, however, as a class of macromolecule that carrying out important regulatory roles in the cell as drug target, only received attention recently. Although several methods have been proposed, an easy to operate, fast and robust method is still lacking. We designed a generic florescence screening method by fusing the target RNA with a florescent aptamer (fusion RNA) and then carried out screening using high-throughput format (Fluorescent Aptamer Screening, FAS). In this work, we chose SL5 on SARS-Cov-2 5UTR as the test target. SL5 is a conserved motif across several corona virus family members whose core is not prone to mutation. We screened 9528 compounds, successfully identified four molecules (Sertraline (hydrochloride), Samuraciclib (hydrochloride), Minocycline (hydrochloride), JG-98 bind direct to the full-length SL5 at micromolar or higher affinity. The design of FAS could be easily adapted to structured RNA motifs without prior knowledge of its 3D structural information. In addition, this work showed the possibility of developing generic drugs for RNA virus by targeting the conserved viral RNA genome and paved a new way for the discovery of small molecule drugs in combating human diseases.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Xu, Y., Du, M., Wang, Y., Xue, Y., SHI, H.. 2026-06-24. Discover Novel RNA Targeting Small Molecules by Fluorescent Aptamer Screening. https://doi.org/10.64898/2026.06.23.734115

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Species-dependent accumulation of PsaA in etioplasts points to light-independent steps in Photosystem I biogenesis

Whether Photosystem I (PSI) core subunits accumulate prior to light exposure in developing angiosperm seedlings remains unresolved, with conflicting reports across species. Here, we investigated the presence and membrane colocalization of the PSI core subunit PsaA in etioplasts of dark-grown angiosperms representing dicot and monocot species. Immunoblotting showed that PsaA accumulates in etioplasts of all three dicot species examined (pea, Arabidopsis, and runner bean), whereas in the monocot oat it was detected only after prolonged etiolation, at substantially lower levels and with an anomalously high apparent molecular weight. Blue-native PAGE analysis reveals that a fraction of PsaA co-migrates with LPOR, PsaB, FNR, and chlorophyll synthase, suggesting co-localization within a shared membrane microdomain rather than stable complex formation. The thylakoid insertase Alb3 was more abundant in dicot etioplasts, consistent with a potential role in the early integration of PsaA into the membrane. Upon illumination, pea reached PSI functionality faster than oat, with P700 oxidation detectable 30 min earlier, linking the dark accumulation of PsaA to an accelerated photosynthetic onset. These findings demonstrate light-independent accumulation of a PSI core subunit in a species-dependent manner and point to early steps in PSI biogenesis that precede full photosynthetic complex assembly. HighlightContrary to prevailing models, a Photosystem I core subunit PsaA accumulates in dark-grown angiosperm seedlings before light exposure, revealing light-independent early steps in photosynthetic complex biogenesis.

Preprint↗

Mechanism and key RNA determinants of SARS-CoV-2 Nsp1-induced endonucleolytic cleavage of mRNA

SARS-CoV-2 nonstructural protein 1 (Nsp1) binds to 40S ribosomal subunits and induces host protein synthesis shut off by inhibiting translation initiation and triggering endonucleolytic cleavage of cellular mRNAs. Irrespective of the mode of initiation, Nsp1-mediated cleavage is induced by the cooperative action of the N-terminal domain of Nsp1, the RRM domain of eIF3g and 40S subunits. Using in vitro reconstitution, we determined that cleavage occurs by transesterification following intramolecular nucleophilic attack of the 2OH of the ribose on the adjacent phosphodiester bond yielding 5OH and 2,3 -cyclic phosphate termini. Cleavage requires a guanosine [~]10-22 nucleotides from the 5 end of mRNA, occurs within a narrow window upstream of this G, is most efficient between nucleotides at positions -6/-7 and -7/-8 relative to G, and shows a preference for Pu at positions -7 or -8 which provides the 2OH for the nucleophilic attack. Zero-length UV cross-linking of Nsp1 to nucleotides at positions -1 and -2 suggests that the critical guanosine may be recognized by Nsp1. Resistance to Nsp1-mediated cleavage of SARS-CoV-2 mRNA was ensured both by the relatively long distance between its G23G24 and the 5end and by the preceding oligoPy stretch lacking purines at positions -7 or -8 upstream of G23G24.

Preprint↗

Love, not food, could have paved the path for dog domestication: A lesson from free-ranging dogs

Dogs (Canis lupus familiaris) are the first species to have been domesticated, and unlike other domesticated species, they have developed a special bonding with their owners. The ability to respond to human gestures and language is a key factor in the socio-cognitive abilities of dogs that have made them our best friend. Free-ranging dogs provide an excellent model system for understanding the dog domestication process. In India, free-ranging dogs occupy every possible human habitation, and interact with humans regularly. They scavenge among garbage, beg for food from humans, give birth in dens close to human habitations, and establish social bonds with people. However, there is ample dog-human conflict on the streets, leading to morbidity and mortality. Hence the ability to assess an unfamiliar human before establishing physical contact could be adaptive for dogs especially in the urban environment. We tested a total of 103 adult free-ranging dogs to investigate their response to immediate and long-term food and social rewards. The dogs were provided a choice of obtaining a food reward either from the hand or the ground. The dogs avoided making physical contact with the unfamiliar human. While immediate rewards were not effective in changing this response, the long-term test showed a strong effect of the social reward on the response of dogs. Our results revealed that dogs tend to build trust based on affection, and not food rewards. This study provides significant insights into nuances of the dynamics that could have paved the path to dog domestication.

Preprint↗