9yki
Crystal structure of human PIM1 kinase bound with CSH-4044 inhibitor
Structural highlights
FunctionPIM1_HUMAN Proto-oncogene with serine/threonine kinase activity involved in cell survival and cell proliferation and thus providing a selective advantage in tumorigenesis. Exerts its oncogenic activity through: the regulation of MYC transcriptional activity, the regulation of cell cycle progression and by phosphorylation and inhibition of proapoptotic proteins (BAD, MAP3K5, FOXO3). Phosphorylation of MYC leads to an increase of MYC protein stability and thereby an increase of transcriptional activity. The stabilization of MYC exerted by PIM1 might explain partly the strong synergism between these two oncogenes in tumorigenesis. Mediates survival signaling through phosphorylation of BAD, which induces release of the anti-apoptotic protein Bcl-X(L)/BCL2L1. Phosphorylation of MAP3K5, an other proapoptotic protein, by PIM1, significantly decreases MAP3K5 kinase activity and inhibits MAP3K5-mediated phosphorylation of JNK and JNK/p38MAPK subsequently reducing caspase-3 activation and cell apoptosis. Stimulates cell cycle progression at the G1-S and G2-M transitions by phosphorylation of CDC25A and CDC25C. Phosphorylation of CDKN1A, a regulator of cell cycle progression at G1, results in the relocation of CDKN1A to the cytoplasm and enhanced CDKN1A protein stability. Promote cell cycle progression and tumorigenesis by down-regulating expression of a regulator of cell cycle progression, CDKN1B, at both transcriptional and post-translational levels. Phosphorylation of CDKN1B,induces 14-3-3-proteins binding, nuclear export and proteasome-dependent degradation. May affect the structure or silencing of chromatin by phosphorylating HP1 gamma/CBX3. Acts also as a regulator of homing and migration of bone marrow cells involving functional interaction with the CXCL12-CXCR4 signaling axis.[1] [2] [3] [4] [5] [6] [7] Publication Abstract from PubMedFermented wheat germ extract (FWGE), a nutraceutical with reported anticancer properties, contains numerous biologically active molecules, but its therapeutic constituents remain unclear. In this study, we identify and characterize a novel small-molecule protein kinase inhibitor isolated from FWGE, designated F10V6W0. Through preparative high-performance liquid chromatography and structural elucidation via X-ray crystallography, this compound was revealed to be a unique benzothiazole. Kinase profiling demonstrated its selectivity toward PIM and DYRK protein kinase families. A chemically synthesized version (CSH-4044), mirrored the activity of the natural product, confirming structural integrity and biological equivalence. We determined the cocrystal structure of CSH-4044 bound to PIM1, revealing ATP-competitive binding and critical hydrophobic and hydrogen-bonding interactions. Functionally, CSH-4044 suppressed PIM3-driven BAD phosphorylation in pancreatic cancer cells and reduced DYRK1A-mediated Tau phosphorylation in neuronal cells. Our findings position CSH-4044 as a promising lead for targeting PIM and DYRK kinase families and highlight FWGE as a potential therapeutic compounds. Identification and Validation of an Inhibitor of the Protein Kinases PIM and DYRK.,Bencze G, Venkataramani P, Elkayam E, Rivera KD, Garg A, Szabadakai I, Orfi L, Joshua-Tor L, Pappin DJ, Tonks NK J Med Chem. 2026 Mar 18. doi: 10.1021/acs.jmedchem.5c03226. PMID:41849779[8] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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