4.8 Article

The Pseudo-Natural Product Rhonin Targets RHOGDI

期刊

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202115193

关键词

Inhibitors; Liposomes; Osteogenesis; Proteins; Pseudo-Natural Products; RHOGDI; Small Molecules

资金

  1. Max Planck Society
  2. European Research Council under the European Union [268309]
  3. German Research Foundation (DFG) [AH 92/8-1]
  4. Cluster of Excellence RESOLV (Ruhr Explores Solvation) (EXC-2033) [390677874]
  5. International Research Training Group (IRTG 1902, SP6)
  6. European Network on Noonan Syndrome and Related Disorders (NSEuroNet) [01GM1621B]
  7. German Federal Ministry of Education and Research-German Network of RASopathy Research (GeNeRARe) [01GM1902C]
  8. Scripps Research Institute
  9. Projekt DEAL

向作者/读者索取更多资源

This study combines biological relevance and fragment-based design to discover novel compounds with potential new biological targets. Through synthesizing pseudo-natural products, a first small-molecule ligand of RHOGDI1 was identified.
For the discovery of novel chemical matter generally endowed with bioactivity, strategies may be particularly efficient that combine previous insight about biological relevance, e.g., natural product (NP) structure, with methods that enable efficient coverage of chemical space, such as fragment-based design. We describe the de novo combination of different 5-membered NP-derived N-heteroatom fragments to structurally unprecedented pseudo-natural products in an efficient complexity-generating and enantioselective one-pot synthesis sequence. The pseudo-NPs inherit characteristic elements of NP structure but occupy areas of chemical space not covered by NP-derived chemotypes, and may have novel biological targets. Investigation of the pseudo-NPs in unbiased phenotypic assays and target identification led to the discovery of the first small-molecule ligand of the RHO GDP-dissociation inhibitor 1 (RHOGDI1), termed Rhonin. Rhonin inhibits the binding of the RHOGDI1 chaperone to GDP-bound RHO GTPases and alters the subcellular localization of RHO GTPases.

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