2026 ARCHIVES
Monday, April 13
9:00 amPre-Conference Training Seminar & Symposium Registration
Chairperson's Remarks
Amanda Garner, PhD, Charles Walgree, Jr. Professor and Associate Chair, College of Pharmacy, Department of Medicinal Chemistry, University of Michigan
Enabling Technologies for Revealing Druggable Paths in RNA Biology
RNAs play a paramount role in maintaining human health. Beyond their intermediary role as messenger RNA, RNAs perform diverse cellular functions, including regulating transcription, splicing, and translation. Called to action by discoveries connecting aberrant RNA biology with human diseases, targeting of RNAs with small molecules has arisen to the forefront of drug discovery. This talk will highlight technologies developed by the Garner laboratory for enabling RNA-targeted drug discovery.
Enhancing Oligonucleotide Screening Efficiency with DNA-Encoded Library Technology
Dillon Flood, PhD, Scientific Director, Elsie Biotechnologies, a GSK company
Elsie Biotechnologies has developed an encoded platform to identify potent and safe oligonucleotide drugs. Our platform was used to discover RNase H-activating antisense oligonucleotides (ASOs) against a target. Oligonucleotides were optimized for knockdown and outperformed a clinical comparator ASO. First, encoded oligonucleotide pools were designed to tile the target, exploring every possible ASO sequence along the mRNA and pre-RNA transcript. ASO hits were identified and screened for in vitro knockdown activity. Subsequent rounds of platform selection optimized the molecule through screening ribose modifications and phosphorothioate (PS) stereochemistry. We are eager to expand the concept for optimization of other drug properties.
Multiplexed RNA Library for Screening of Selective RNA Regulators
Richard Kaoru Komatsu, PhD, Co-Founder & CTO, xFOREST Therapeutics
Selectivity remains a key bottleneck in RNA-targeted small molecule discovery. We developed Library-vs-Library screening platforms using multiplexed panels of >1,000 RNA structures for real-time selectivity monitoring. MatrixFOREST identifies selective binders, with hits optimized from 18 nM to sub-nanomolar affinity (KD = 900 pM). SpliceVerse delivers functional selective splicing modulators with target-specific activity. These parallel approaches enable systematic discovery of both high-affinity binders and mechanism-validated modulators for RNA-targeted therapeutics.
Wade Hasenour, Regional Sales Mgr, Sales, SP Genevac
Genevac supports upstream RNA and nucleic-acid sample preparation by enabling controlled concentration and drying prior to downstream workflows. Genevac literature documents use of EZ-2 evaporators for drying temperature sensitive samples without compromising sample integrity, with features such as SampleGuard temperature control and anti-bumping protection. EZ-2 evaporators also position the platform for diagnostic kits, post-purification, and oligo synthesis applications.
3:15 pmNetworking Refreshment Break
A Structure-Based Approach to Drugging RNA with Small Molecules
Emily Garcia Sega, PhD, Associate Director, Medicinal Chemistry, Arrakis Therapeutics
Our mission at Arrakis is to solve very broadly the problem of how to drug RNA with small molecules. This presentation will provide an update on the platform we have built to achieve that mission and provide early data on specific mRNA targets.
Context-Selective Translation Inhibition as a Novel, rRNA Binding Therapeutic Modality
Lawrence Hamann, PhD, Co-Founder & President & CEO, Interdict Bio
Interdictors are small molecule context-dependent ribosome stallers that inhibit translation of disease-causing genes. We have developed interdictor molecules that potently inhibit the growth of short half-life oncogene-dependent cancers in vitro and demonstrate robust efficacy in multiple xenograft models in mice at a low oral, well-tolerated dose, as well as interdictors which reduce the synthesis of aggregation-prone neurotoxic proteins. A candidate in our lead program is undergoing IND-enabling characterization for clinical study in multiple MYC-driven tumor types.
Integrating AI and Structural Analysis to Accelerate RNA-Targeted Drug Discovery
Ella Morishita, PhD, CSO, Veritas In Silico Inc.
Despite significant advances, discovering RNA-targeted small molecules remains challenging. Here, I will present approaches combining multiple AIs, tailored for different drug discovery stages, with 3D structural analyses. Our AI-augmented iterative screening boosts SAR-tractable hit identification, while structural insights clarify binding modes and guide rational design, improving efficiency, selectivity, and ADMET properties. Supported by accumulated data and quantitative HTS, our approaches drive progess in RNA-targeted small molecule drug discovery.
FEATURED PRESENTATION: Targeting RNA Tertiary Structures with Small Molecules: Establishing the Metrics for Specificity
Anna Marie Pyle, PhD, Sterling Professor of Molecular & Cellular & Developmental Biology; Professor of Chemistry; Yale University
Our most widely-utilized antibiotics are serendipitously-discovered natural products that bind bacterial ribosomal RNAs. The selectivity of small molecule targeting has also resulted in the evolution of riboswitches that modulate gene expression. By merging medicinal chemistry and RNA biochemistry, one can now create small molecules specifically designed to target individual RNA tertiary structures, such as self-splicing introns and RNAse P RNAs, which represent a proving ground for establishing the “rules” for RNA targeting that can be used in designing drugs against complex human targets, such as primary microRNAs and human UTR motifs.
5:20 pmClose of Symposium
SC4: From Biophysics to Cellular Target Engagement: Tools for Small Molecule Ligand Identification & Analysis
*Premium Pricing or separate registration required. See Short Courses page for details.
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