TY - JOUR
T1 - Targeted NUDT5 inhibitors block hormone signaling in breast cancer cells
AU - Page, Brent D G
AU - Valerie, Nicholas C K
AU - Wright, Roni H G
AU - Wallner, Olov
AU - Isaksson, Rebecka
AU - Carter, Megan
AU - Rudd, Sean G
AU - Loseva, Olga
AU - Jemth, Ann-Sofie
AU - Almlöf, Ingrid
AU - Font-Mateu, Jofre
AU - Llona-Minguez, Sabin
AU - Baranczewski, Pawel
AU - Jeppsson, Fredrik
AU - Homan, Evert
AU - Almqvist, Helena
AU - Axelsson, Hanna
AU - Regmi, Shruti
AU - Gustavsson, Anna-Lena
AU - Lundbäck, Thomas
AU - Scobie, Martin
AU - Strömberg, Kia
AU - Stenmark, Pål
AU - Beato, Miguel
AU - Helleday, Thomas
PY - 2018/1/17
Y1 - 2018/1/17
N2 - With a diverse network of substrates, NUDIX hydrolases have emerged as a key family of nucleotide-metabolizing enzymes. NUDT5 (also called NUDIX5) has been implicated in ADP-ribose and 8-oxo-guanine metabolism and was recently identified as a rheostat of hormone-dependent gene regulation and proliferation in breast cancer cells. Here, we further elucidate the physiological relevance of known NUDT5 substrates and underscore the biological requirement for NUDT5 in gene regulation and proliferation of breast cancer cells. We confirm the involvement of NUDT5 in ADP-ribose metabolism and dissociate a relationship to oxidized nucleotide sanitation. Furthermore, we identify potent NUDT5 inhibitors, which are optimized to promote maximal NUDT5 cellular target engagement by CETSA. Lead compound, TH5427, blocks progestin-dependent, PAR-derived nuclear ATP synthesis and subsequent chromatin remodeling, gene regulation and proliferation in breast cancer cells. We herein present TH5427 as a promising, targeted inhibitor that can be used to further study NUDT5 activity and ADP-ribose metabolism.
AB - With a diverse network of substrates, NUDIX hydrolases have emerged as a key family of nucleotide-metabolizing enzymes. NUDT5 (also called NUDIX5) has been implicated in ADP-ribose and 8-oxo-guanine metabolism and was recently identified as a rheostat of hormone-dependent gene regulation and proliferation in breast cancer cells. Here, we further elucidate the physiological relevance of known NUDT5 substrates and underscore the biological requirement for NUDT5 in gene regulation and proliferation of breast cancer cells. We confirm the involvement of NUDT5 in ADP-ribose metabolism and dissociate a relationship to oxidized nucleotide sanitation. Furthermore, we identify potent NUDT5 inhibitors, which are optimized to promote maximal NUDT5 cellular target engagement by CETSA. Lead compound, TH5427, blocks progestin-dependent, PAR-derived nuclear ATP synthesis and subsequent chromatin remodeling, gene regulation and proliferation in breast cancer cells. We herein present TH5427 as a promising, targeted inhibitor that can be used to further study NUDT5 activity and ADP-ribose metabolism.
KW - Adenosine Diphosphate Ribose/metabolism
KW - Adenosine Triphosphate/metabolism
KW - Breast Neoplasms/genetics
KW - Cell Line, Tumor
KW - Cell Nucleus/drug effects
KW - Cell Proliferation/drug effects
KW - Enzyme Inhibitors/chemistry
KW - Female
KW - HL-60 Cells
KW - Humans
KW - Molecular Structure
KW - Progestins/metabolism
KW - Pyrophosphatases/antagonists & inhibitors
KW - RNA Interference
KW - Signal Transduction/drug effects
KW - Substrate Specificity
UR - https://www.scopus.com/pages/publications/85041404218
U2 - 10.1038/s41467-017-02293-7
DO - 10.1038/s41467-017-02293-7
M3 - Article
C2 - 29343827
SN - 2041-1723
VL - 9
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 250
ER -