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Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome

SF3B1 splicing factor mutations are near-universally found in myelodysplastic syndromes (MDS) with ring sideroblasts (RS), a clonal hematopoietic disorder characterized by abnormal erythroid cells with iron-loaded mitochondria. Despite this remarkably strong genotype-to-phenotype correlation, the me...

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Autores principales: Clough, Courtnee A., Pangallo, Joseph, Sarchi, Martina, Ilagan, Janine O., North, Khrystyna, Bergantinos, Rochelle, Stolla, Massiel C., Naru, Jasmine, Nugent, Patrick, Kim, Eunhee, Stirewalt, Derek L., Subramaniam, Arvind R., Abdel-Wahab, Omar, Abkowitz, Janis L., Bradley, Robert K., Doulatov, Sergei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Hematology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8972092/
https://www.ncbi.nlm.nih.gov/pubmed/34861039
http://dx.doi.org/10.1182/blood.2021012652
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author Clough, Courtnee A.
Pangallo, Joseph
Sarchi, Martina
Ilagan, Janine O.
North, Khrystyna
Bergantinos, Rochelle
Stolla, Massiel C.
Naru, Jasmine
Nugent, Patrick
Kim, Eunhee
Stirewalt, Derek L.
Subramaniam, Arvind R.
Abdel-Wahab, Omar
Abkowitz, Janis L.
Bradley, Robert K.
Doulatov, Sergei
author_facet Clough, Courtnee A.
Pangallo, Joseph
Sarchi, Martina
Ilagan, Janine O.
North, Khrystyna
Bergantinos, Rochelle
Stolla, Massiel C.
Naru, Jasmine
Nugent, Patrick
Kim, Eunhee
Stirewalt, Derek L.
Subramaniam, Arvind R.
Abdel-Wahab, Omar
Abkowitz, Janis L.
Bradley, Robert K.
Doulatov, Sergei
author_sort Clough, Courtnee A.
collection PubMed
description SF3B1 splicing factor mutations are near-universally found in myelodysplastic syndromes (MDS) with ring sideroblasts (RS), a clonal hematopoietic disorder characterized by abnormal erythroid cells with iron-loaded mitochondria. Despite this remarkably strong genotype-to-phenotype correlation, the mechanism by which mutant SF3B1 dysregulates iron metabolism to cause RS remains unclear due to an absence of physiological models of RS formation. Here, we report an induced pluripotent stem cell model of SF3B1-mutant MDS that for the first time recapitulates robust RS formation during in vitro erythroid differentiation. Mutant SF3B1 induces missplicing of ∼100 genes throughout erythroid differentiation, including proposed RS driver genes TMEM14C, PPOX, and ABCB7. All 3 missplicing events reduce protein expression, notably occurring via 5′ UTR alteration, and reduced translation efficiency for TMEM14C. Functional rescue of TMEM14C and ABCB7, but not the non–rate-limiting enzyme PPOX, markedly decreased RS, and their combined rescue nearly abolished RS formation. Our study demonstrates that coordinated missplicing of mitochondrial transporters TMEM14C and ABCB7 by mutant SF3B1 sequesters iron in mitochondria, causing RS formation.
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spelling pubmed-89720922023-03-31 Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome Clough, Courtnee A. Pangallo, Joseph Sarchi, Martina Ilagan, Janine O. North, Khrystyna Bergantinos, Rochelle Stolla, Massiel C. Naru, Jasmine Nugent, Patrick Kim, Eunhee Stirewalt, Derek L. Subramaniam, Arvind R. Abdel-Wahab, Omar Abkowitz, Janis L. Bradley, Robert K. Doulatov, Sergei Blood Myeloid Neoplasia SF3B1 splicing factor mutations are near-universally found in myelodysplastic syndromes (MDS) with ring sideroblasts (RS), a clonal hematopoietic disorder characterized by abnormal erythroid cells with iron-loaded mitochondria. Despite this remarkably strong genotype-to-phenotype correlation, the mechanism by which mutant SF3B1 dysregulates iron metabolism to cause RS remains unclear due to an absence of physiological models of RS formation. Here, we report an induced pluripotent stem cell model of SF3B1-mutant MDS that for the first time recapitulates robust RS formation during in vitro erythroid differentiation. Mutant SF3B1 induces missplicing of ∼100 genes throughout erythroid differentiation, including proposed RS driver genes TMEM14C, PPOX, and ABCB7. All 3 missplicing events reduce protein expression, notably occurring via 5′ UTR alteration, and reduced translation efficiency for TMEM14C. Functional rescue of TMEM14C and ABCB7, but not the non–rate-limiting enzyme PPOX, markedly decreased RS, and their combined rescue nearly abolished RS formation. Our study demonstrates that coordinated missplicing of mitochondrial transporters TMEM14C and ABCB7 by mutant SF3B1 sequesters iron in mitochondria, causing RS formation. American Society of Hematology 2022-03-31 /pmc/articles/PMC8972092/ /pubmed/34861039 http://dx.doi.org/10.1182/blood.2021012652 Text en © 2022 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved.
spellingShingle Myeloid Neoplasia
Clough, Courtnee A.
Pangallo, Joseph
Sarchi, Martina
Ilagan, Janine O.
North, Khrystyna
Bergantinos, Rochelle
Stolla, Massiel C.
Naru, Jasmine
Nugent, Patrick
Kim, Eunhee
Stirewalt, Derek L.
Subramaniam, Arvind R.
Abdel-Wahab, Omar
Abkowitz, Janis L.
Bradley, Robert K.
Doulatov, Sergei
Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome
title Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome
title_full Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome
title_fullStr Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome
title_full_unstemmed Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome
title_short Coordinated missplicing of TMEM14C and ABCB7 causes ring sideroblast formation in SF3B1-mutant myelodysplastic syndrome
title_sort coordinated missplicing of tmem14c and abcb7 causes ring sideroblast formation in sf3b1-mutant myelodysplastic syndrome
topic Myeloid Neoplasia
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8972092/
https://www.ncbi.nlm.nih.gov/pubmed/34861039
http://dx.doi.org/10.1182/blood.2021012652
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