Please use this identifier to cite or link to this item: https://observatorio.fm.usp.br/handle/OPI/47024
Title: STMN1 is highly expressed and contributes to clonogenicity in acute promyelocytic leukemia cells
Authors: VICARI, Hugo PassosCOELHO-SILVA, Juan LuizPEREIRA-MARTINS, Diego A.LUCENA-ARAUJO, Antonio RobertoLIMA, KeliSILVA, Jean Carlos Lipreri daSCHEUCHER, Priscila SantosKOURY, Luisa C.MELO, Raul A. deBITTENCOURT, RosanePAGNANO, KatiaNUNES, ElenaideFAGUNDES, Evandro M.KERBAUY, FabioFIGUEIREDO-PONTES, Lorena Lobo DeCOSTA-LOTUFO, Leticia VerasREGO, Eduardo MagalhaesTRAINA, FabiolaMACHADO-NETO, Joao Agostinho
Citation: INVESTIGATIONAL NEW DRUGS, v.40, n.2, p.438-452, 2022
Abstract: Stathmin 1 (STMN1) is a microtubule-destabilizing protein highly expressed in hematological malignancies and involved in proliferation and differentiation. Although a previous study found that the PML-RAR alpha fusion protein, which contributes to the pathophysiology of acute promyelocytic leukemia (APL), positively regulates STMN1 at the transcription and protein activity levels, little is known about the role of STMN1 in APL. In this study, we aimed to investigate the STMN1 expression levels and their associations with laboratory, clinical, and genomic data in APL patients. We also assessed the dynamics of STMN1 expression during myeloid cell differentiation and cell cycle progression, and the cellular effects of STMN1 silencing and pharmacological effects of microtubule-stabilizing drugs on APL cells. We found that STMN1 transcripts were significantly increased in samples from APL patients compared with those of healthy donors (all p< 0.05). However, this had no effect on clinical outcomes. STMN1 expression was associated with proliferation- and metabolism-related gene signatures in APL. Our data confirmed that STMN1 was highly expressed in early hematopoietic progenitors and reduced during cell differentiation, including the ATRA-induced granulocytic differentiation model. STMN1 phosphorylation was predominant in a pool of mitosis-enriched APL cells. In NB4 and NB4-R2 cells, STMN1 knockdown decreased autonomous cell growth (all p< 0.05) but did not impact ATRA-induced apoptosis and differentiation. Finally, treatment with paclitaxel (as a single agent or combined with ATRA) induced microtubule stabilization, resulting in mitotic catastrophe with repercussions for cell viability, even in ATRA-resistant APL cells. This study provides new insights into the STMN1 functions and microtubule dynamics in APL.
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Artigos e Materiais de Revistas Científicas - FM/MCM
Departamento de Clínica Médica - FM/MCM

Artigos e Materiais de Revistas Científicas - LIM/31
LIM/31 - Laboratório de Genética e Hematologia Molecular

Artigos e Materiais de Revistas Científicas - ODS/03
ODS/03 - Saúde e bem-estar

Artigos e Materiais de Revistas Científicas - ODS/10
ODS/10 - Redução da desigualdade


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