MTA-cooperative PRMT5 inhibitors from cofactor-directed DNA-encoded library screens.

通过辅因子导向的DNA编码文库筛选得到的MTA协同PRMT5抑制剂

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作者:Andersson Jan, Cowland Sanne, Vestergaard Mikkel, Yang Yajing, Liu Siyuan, Fang Xie, Mukund Susmith, Ghimire-Rijal Sudipa, Carter Chris, Chung Grace, Jacso Tomas, Sarvary Ian, Hughes Paul E, Gouliaev Alex, Payton Marc, Belmontes Brian, Caenepeel Sean, Franch Thomas, Glad Sanne, Husemoen Birgitte, Nielsen Søren Jensby
Methylthioadenosine phosphorylase (MTAP) gene deletions are frequent in human cancers. Loss of MTAP leads to significantly increased cellular levels of methylthioadenosine (MTA), a cellular metabolite and specific inhibitor of the cell-essential enzyme Protein Arginine Methyltransferase-5 (PRMT5). Using a cofactor-directed screening strategy and DNA-encoded libraries, we identify a class of PRMT5 inhibitors that cooperatively inhibit PRMT5 in the presence of MTA. An optimized inhibitor, AM-9934, selectively inhibits PRMT5 in MTAP-deleted cells and in transplanted tumors while sparing MTAP-expressing counterparts, leading to specific suppression of viability in MTAP-deleted cells. Structural studies show that AM-9934 occupies the arginine substrate pocket of MTA-bound PRMT5. This study introduces a broadly applicable method for directed DNA-encoded library screening toward a desired mechanistic outcome and highlights MTA-selective PRMT5 inhibition as an attractive therapeutic strategy with a potentially broad therapeutic index in patients with MTAP-deleted cancers.

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