TY - JOUR
T1 - Sphingosine simultaneously inhibits nuclear import and activates PP2A by binding importins and PPP2R1A
AU - Jayashankar, Vaishali
AU - Kubiniok, Peter
AU - McCracken, Alison N.
AU - Gentry, Rebeca G.
AU - Eckenstein, Kazumi H.
AU - Sernissi, Lorenzo
AU - Vece, Vito
AU - Garsi, Jean Baptiste
AU - Valles, Sarah Y.
AU - Jung, Sunhee
AU - Hoffman, Natalie C.
AU - Perrochon, Arielle S.
AU - Selwan, Elizabeth M.
AU - Finicle, Brendan T.
AU - Pitman, Mary
AU - Lin, Da Wei
AU - Bonneil, Éric
AU - Xu, Ruijuan
AU - Mao, Cungui
AU - Kaiser, Peter
AU - Fruman, David A.
AU - Mobley, David
AU - Jang, Cholsoon
AU - Hanessian, Stephen
AU - Thibault, Pierre
AU - Edinger, Aimee L.
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025/8/18
Y1 - 2025/8/18
N2 - Sphingosine and constrained analogs like FTY720 and SH-BC-893 restrain tumor growth through incompletely defined mechanisms that include protein phosphatase 2A (PP2A) activation. Here we show that these compounds directly bind not only the PP2A scaffolding subunit PPP2R1A, but also the structurally related karyopherins importin-β1 (KPNB1), transportin-1 (TNPO1), importin-5 (IPO5), and importin-7 (IPO7). Binding to sphingosine-like molecules triggers reversible unfolding of these target proteins, resulting in activation of PP2A and inhibition of importins. Although sphingosine engages these proteins, ceramide does not, suggesting that these two endogenous tumor-suppressive sphingolipids work through distinct mechanisms. Simultaneous PP2A activation and importin inhibition reduces nuclear levels of proteins that drive cancer progression and therapeutic resistance such as JUN, YAP, MYC, androgen receptor, hnRNPA1, and NF-κB under conditions where compounds that target PP2A or KPNB1 individually are inactive. These findings provide new insights into sphingolipid biology and highlight a possible path toward cancer therapeutics that could overcome drug resistance.
AB - Sphingosine and constrained analogs like FTY720 and SH-BC-893 restrain tumor growth through incompletely defined mechanisms that include protein phosphatase 2A (PP2A) activation. Here we show that these compounds directly bind not only the PP2A scaffolding subunit PPP2R1A, but also the structurally related karyopherins importin-β1 (KPNB1), transportin-1 (TNPO1), importin-5 (IPO5), and importin-7 (IPO7). Binding to sphingosine-like molecules triggers reversible unfolding of these target proteins, resulting in activation of PP2A and inhibition of importins. Although sphingosine engages these proteins, ceramide does not, suggesting that these two endogenous tumor-suppressive sphingolipids work through distinct mechanisms. Simultaneous PP2A activation and importin inhibition reduces nuclear levels of proteins that drive cancer progression and therapeutic resistance such as JUN, YAP, MYC, androgen receptor, hnRNPA1, and NF-κB under conditions where compounds that target PP2A or KPNB1 individually are inactive. These findings provide new insights into sphingolipid biology and highlight a possible path toward cancer therapeutics that could overcome drug resistance.
KW - Homeostatic Growth Control
KW - Nuclear Import
KW - Protein Phosphatase 2A
KW - Sphingosine
UR - https://www.scopus.com/pages/publications/105009439036
U2 - 10.1038/s44318-025-00490-5
DO - 10.1038/s44318-025-00490-5
M3 - Article
C2 - 40588551
AN - SCOPUS:105009439036
SN - 0261-4189
VL - 44
SP - 4473
EP - 4498
JO - EMBO Journal
JF - EMBO Journal
IS - 16
ER -