Discrete On-DNA Screening: A Frontier for Rapid Hit-to-Lead Optimization Applied to p38α

  • ACS Med Chem Lett. 2026 Jun 29;17(7):1664-1671. doi: 10.1021/acsmedchemlett.6c00278.
Hangke Ma  1 Peng Chen  2 Siyue Chen  1 Han Zhang  2 Fanming Zeng  1 Zhijun Han  2 Li Chen  2 Ayun Luo  1 Huanqing Zhang  1 Zhaomei Sun  1 Kehan Zhou  1 Lijun Xue  1 Kexin Yang  3 Yun Jin Hu  1
Affiliations
  • 1. Pharmaron (Ningbo) Technology Development Co., Ltd., No. 800 Bin-Hai Fourth Road, Qianwan New Area, Ningbo 315336, China.
  • 2. Pharmaron (Xi'an) Technology Development Co., Ltd., No. 1980 Guangde Road, Airport New City, Xixian New Area, Xixian, Shaanxi 712000, China.
  • 3. Pharmaron Beijing Co., Ltd., 6 Taihe Road, BDA, Beijing 100176, China.
Abstract

High-throughput screening (HTS) and DNA-encoded library (DEL) selection are cornerstones of drug discovery but suffer from high operational infrastructure requirements or constraints to affinity-only selections. Herein we report a robust on-DNA compound screening method that bridges this gap, enabling direct functional evaluation of DNA-linked small molecules while bypassing plate-based or selection-wash limitations. To validate this platform, a focused collection of trisubstituted benzamides was synthesized and screened directly on-DNA against p38α MAPK. This methodology rapidly prioritized advanced structures, culminating in the seamless identification of compound I-13. Upon off-DNA synthesis, I-13 was confirmed as a potent p38α Inhibitor (IC50 = 65 nM), demonstrating 4-fold selectivity over p38β and excellent selectivity over p38γ and p38δ (>461 fold). While achieving reasonable p38α/β isoform selectivity remains a subject for future optimization, this platform offers a powerful, low-barrier alternative to traditional HTS and DEL for rapid, functional hit-to-lead discovery.

Keywords
Hit-to-lead; Kinase inhibitor; On-DNA screening; Structure−activity relationship (SAR); p38α MAP kinase.
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