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

J Jan Andersson (Amgen Research) S Sanne Cowland (Amgen Research) M Mikkel Vestergaard (Amgen Research) Y Yajing Yang (Department of Chemical Engineering) S Siyuan Liu (Sydney Dental School, Faculty of Medicine and Health, Charles Perkins Centre) X Xie Fang (Amgen Research) S Susmith Mukund (Amgen Research) S Sudipa Ghimire-Rijal (Amgen Research) C Chris Carter (Amgen Research) G Grace Chung T Tomas Jacso (Amgen Research) I Ian Sarvary (Amgen Research) P Paul E. Hughes (Amgen Research) A Alex Gouliaev (Amgen Research) M Marc Payton (Amgen Research) B Brian Belmontes (Amgen Research) S Sean Caenepeel (Amgen Research) T Thomas Franch (Amgen Research) S Sanne Glad (Amgen Research) B Birgitte Husemoen (Amgen Research) S Søren Jensby Nielsen (Amgen Research)

Abstract

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.

Article Details

Volume / Issue Vol. 122, Issue 20
Published May 20, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (21)

J

Jan Andersson

Amgen Research

S

Sanne Cowland

Amgen Research

M

Mikkel Vestergaard

Amgen Research

Y

Yajing Yang

Department of Chemical Engineering

S

Siyuan Liu

Sydney Dental School, Faculty of Medicine and Health, Charles Perkins Centre

X

Xie Fang

Amgen Research

S

Susmith Mukund

Amgen Research

S

Sudipa Ghimire-Rijal

Amgen Research

C

Chris Carter

Amgen Research

G

Grace Chung

T

Tomas Jacso

Amgen Research

I

Ian Sarvary

Amgen Research

P

Paul E. Hughes

Amgen Research

A

Alex Gouliaev

Amgen Research

M

Marc Payton

Amgen Research

B

Brian Belmontes

Amgen Research

S

Sean Caenepeel

Amgen Research

T

Thomas Franch

Amgen Research

S

Sanne Glad

Amgen Research

B

Birgitte Husemoen

Amgen Research

S

Søren Jensby Nielsen

Amgen Research