TY - JOUR
T1 - Splicing of erythroid transcription factor is associated with therapeutic response in myelodysplastic syndromes
AU - Aluri, Srinivas
AU - Ling, Te
AU - Fraint, Ellen
AU - Chakraborty, Samarpana
AU - Zhang, Kevin
AU - Ahsan, Aarif
AU - Kravets, Leah
AU - Poigaialwar, Gowri
AU - Zhao, Rongbao
AU - Pradhan, Kith
AU - Cotton, Anitria
AU - Bachiashvili, Kimo
AU - Yang, Jung-In
AU - Budhathoki, Anjali
AU - Agarwal, Beamon
AU - Gordon-Mitchell, Shanisha
AU - Carbajal, Milagros
AU - Sahu, Srabani
AU - Boultwood, Jacqueline
AU - Pellagatti, Andrea
AU - Steidl, Ulrich
AU - Wickrema, Amittha
AU - Nandakumar, Satish
AU - Shastri, Aditi
AU - Suragani, Rajasekhar Nvs
AU - Bowman, Teresa V
AU - Crispino, John D
AU - Vodala, Sadanand
AU - Verma, Amit
N1 - Publisher Copyright:
© 2025, Aluri et al.
PY - 2025/7/1
Y1 - 2025/7/1
N2 - Anemia is the primary clinical manifestation of myelodysplastic syndromes (MDSs), but the molecular pathogenesis of ineffective erythropoiesis remains incompletely understood. Luspatercept, an activin receptor 2B (ACVRIIB-Fc) ligand trap, has been approved to treat anemia; however, its molecular mechanism of action is unclear. We found that activin receptor 2B (ACVR2B), its ligand growth and differentiation factor 11 (GDF11), and an effector, SMAD2, are upregulated in samples of patients with MDS. GDF11 inhibited human erythropoiesis in vitro and caused anemia in zebrafish, effects that were abrogated by luspatercept. Upon GDF11 stimulation of human erythroid progenitors, SMAD2 binding occurred in the erythroid regulatory regions, including at the GATA1 intron. Intronic SMAD2-binding led to skipping of exon 2 of GATA1, resulting in a shorter, hypomorphic isoform (GATA1s). CRISPR deletion of the SMAD2-binding intronic region decreased GATA1s production upon GDF11 stimulation. Expression of GATA1s in a mouse model led to anemia, rescued by a murine ActRIIB-Fc (RAP-536). Finally, RNA-Seq analysis of samples from the phase 3 MEDALIST trial revealed that responders to luspatercept had a higher proportion of GATA1s compared with nonresponders. Moreover, the increase in RBCs after treatment was linked to a relative decrease in GATA1s isoforms. Our study indicates that GDF11-mediated SMAD2 activation results in an increase in functionally impaired GATA1 isoforms, consequently contributing to anemia and influencing responses to luspatercept in MDS.
AB - Anemia is the primary clinical manifestation of myelodysplastic syndromes (MDSs), but the molecular pathogenesis of ineffective erythropoiesis remains incompletely understood. Luspatercept, an activin receptor 2B (ACVRIIB-Fc) ligand trap, has been approved to treat anemia; however, its molecular mechanism of action is unclear. We found that activin receptor 2B (ACVR2B), its ligand growth and differentiation factor 11 (GDF11), and an effector, SMAD2, are upregulated in samples of patients with MDS. GDF11 inhibited human erythropoiesis in vitro and caused anemia in zebrafish, effects that were abrogated by luspatercept. Upon GDF11 stimulation of human erythroid progenitors, SMAD2 binding occurred in the erythroid regulatory regions, including at the GATA1 intron. Intronic SMAD2-binding led to skipping of exon 2 of GATA1, resulting in a shorter, hypomorphic isoform (GATA1s). CRISPR deletion of the SMAD2-binding intronic region decreased GATA1s production upon GDF11 stimulation. Expression of GATA1s in a mouse model led to anemia, rescued by a murine ActRIIB-Fc (RAP-536). Finally, RNA-Seq analysis of samples from the phase 3 MEDALIST trial revealed that responders to luspatercept had a higher proportion of GATA1s compared with nonresponders. Moreover, the increase in RBCs after treatment was linked to a relative decrease in GATA1s isoforms. Our study indicates that GDF11-mediated SMAD2 activation results in an increase in functionally impaired GATA1 isoforms, consequently contributing to anemia and influencing responses to luspatercept in MDS.
KW - Activin Receptors, Type II/genetics
KW - Anemia/genetics
KW - Animals
KW - Bone Morphogenetic Proteins/genetics
KW - Erythropoiesis/drug effects
KW - Female
KW - GATA1 Transcription Factor/genetics
KW - Growth Differentiation Factors/genetics
KW - Humans
KW - Immunoglobulin Fc Fragments/pharmacology
KW - Male
KW - Mice
KW - Myelodysplastic Syndromes/genetics
KW - RNA Splicing
KW - Recombinant Fusion Proteins
KW - Smad2 Protein/metabolism
KW - Zebrafish
KW - Zebrafish Proteins/genetics
UR - https://www.scopus.com/pages/publications/105010193260
U2 - 10.1172/JCI189266
DO - 10.1172/JCI189266
M3 - Article
C2 - 40424086
SN - 0021-9738
VL - 135
JO - The Journal of clinical investigation
JF - The Journal of clinical investigation
IS - 13
M1 - e189266
ER -