Cargando…

STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression

STS1 and STS2, as the protein phosphatases that dephosphorylate FLT3 and cKIT, negatively regulate the self-renewal and differentiation of hematopoietic stem and progenitor cells (HSPCs). To obtain the small molecule inhibitors of STS1/STS2 phosphatase activity used to expand HSPCs both in vitro and...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Na, Wang, Yanhong, Wang, Anqing, Zhang, Jing, Jia, Chaoran, Yu, Chunlei, Song, Zhenbo, Wang, Shuyue, Liu, Lei, Yi, Jingwen, Bao, Yongli, Huang, Yanxin, Sun, Luguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917816/
https://www.ncbi.nlm.nih.gov/pubmed/36769312
http://dx.doi.org/10.3390/ijms24032987
_version_ 1784886458478231552
author Li, Na
Wang, Yanhong
Wang, Anqing
Zhang, Jing
Jia, Chaoran
Yu, Chunlei
Song, Zhenbo
Wang, Shuyue
Liu, Lei
Yi, Jingwen
Bao, Yongli
Huang, Yanxin
Sun, Luguo
author_facet Li, Na
Wang, Yanhong
Wang, Anqing
Zhang, Jing
Jia, Chaoran
Yu, Chunlei
Song, Zhenbo
Wang, Shuyue
Liu, Lei
Yi, Jingwen
Bao, Yongli
Huang, Yanxin
Sun, Luguo
author_sort Li, Na
collection PubMed
description STS1 and STS2, as the protein phosphatases that dephosphorylate FLT3 and cKIT, negatively regulate the self-renewal and differentiation of hematopoietic stem and progenitor cells (HSPCs). To obtain the small molecule inhibitors of STS1/STS2 phosphatase activity used to expand HSPCs both in vitro and in vivo, we establish an in vitro phosphatase assay using the recombinant proteins of the STS1/STS2 histidine phosphatase (HP) domain, by which we screened out baicalein (BC) as one of the effective inhibitors targeting STS1 and STS2. Then, we further demonstrate the direct binding of BC with STS1/STS2 using molecular docking and capillary electrophoresis and verify that BC can restore the phosphorylation of FLT3 and cKIT from STS1/STS2 inhibition. In a short-term in vitro culture, BC promotes profound expansion and enhances the colony-forming capacity of both human and mouse HSPCs along with the elevation of phospho-FLT3 and phospho-cKIT levels. Likewise, in vivo administration with BC significantly increases the proportions of short-term hematopoietic stem cells (ST-HSCs), multipotent progenitors (MPPs) and especially long-term HSCs (LT-HSCs) in healthy mouse bone marrow and increases the numbers of colony-forming units (CFU) formed by HSPCs as well. More importantly, pre-administration of BC significantly enhances the survival of mice with lethal 5-fluorouracil (5-FU) injection due to the alleviation of 5-FU-induced myelosuppression, as evidenced by the recovery of bone marrow histologic injury, the increased proportions of LT-HSCs, ST-HSCs and MPPs, and enhanced colony-forming capacity. Collectively, our study not only suggests BC as one of the small molecule candidates to stimulate HSPC expansion both in vitro and in vivo when needed in either physiologic or pathologic conditions, but also supports STS1/STS2 as potential therapeutic drug targets for HSPC expansion and hematopoietic injury recovery.
format Online
Article
Text
id pubmed-9917816
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99178162023-02-11 STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression Li, Na Wang, Yanhong Wang, Anqing Zhang, Jing Jia, Chaoran Yu, Chunlei Song, Zhenbo Wang, Shuyue Liu, Lei Yi, Jingwen Bao, Yongli Huang, Yanxin Sun, Luguo Int J Mol Sci Article STS1 and STS2, as the protein phosphatases that dephosphorylate FLT3 and cKIT, negatively regulate the self-renewal and differentiation of hematopoietic stem and progenitor cells (HSPCs). To obtain the small molecule inhibitors of STS1/STS2 phosphatase activity used to expand HSPCs both in vitro and in vivo, we establish an in vitro phosphatase assay using the recombinant proteins of the STS1/STS2 histidine phosphatase (HP) domain, by which we screened out baicalein (BC) as one of the effective inhibitors targeting STS1 and STS2. Then, we further demonstrate the direct binding of BC with STS1/STS2 using molecular docking and capillary electrophoresis and verify that BC can restore the phosphorylation of FLT3 and cKIT from STS1/STS2 inhibition. In a short-term in vitro culture, BC promotes profound expansion and enhances the colony-forming capacity of both human and mouse HSPCs along with the elevation of phospho-FLT3 and phospho-cKIT levels. Likewise, in vivo administration with BC significantly increases the proportions of short-term hematopoietic stem cells (ST-HSCs), multipotent progenitors (MPPs) and especially long-term HSCs (LT-HSCs) in healthy mouse bone marrow and increases the numbers of colony-forming units (CFU) formed by HSPCs as well. More importantly, pre-administration of BC significantly enhances the survival of mice with lethal 5-fluorouracil (5-FU) injection due to the alleviation of 5-FU-induced myelosuppression, as evidenced by the recovery of bone marrow histologic injury, the increased proportions of LT-HSCs, ST-HSCs and MPPs, and enhanced colony-forming capacity. Collectively, our study not only suggests BC as one of the small molecule candidates to stimulate HSPC expansion both in vitro and in vivo when needed in either physiologic or pathologic conditions, but also supports STS1/STS2 as potential therapeutic drug targets for HSPC expansion and hematopoietic injury recovery. MDPI 2023-02-03 /pmc/articles/PMC9917816/ /pubmed/36769312 http://dx.doi.org/10.3390/ijms24032987 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Na
Wang, Yanhong
Wang, Anqing
Zhang, Jing
Jia, Chaoran
Yu, Chunlei
Song, Zhenbo
Wang, Shuyue
Liu, Lei
Yi, Jingwen
Bao, Yongli
Huang, Yanxin
Sun, Luguo
STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression
title STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression
title_full STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression
title_fullStr STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression
title_full_unstemmed STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression
title_short STS1 and STS2 Phosphatase Inhibitor Baicalein Enhances the Expansion of Hematopoietic and Progenitor Stem Cells and Alleviates 5-Fluorouracil-Induced Myelosuppression
title_sort sts1 and sts2 phosphatase inhibitor baicalein enhances the expansion of hematopoietic and progenitor stem cells and alleviates 5-fluorouracil-induced myelosuppression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917816/
https://www.ncbi.nlm.nih.gov/pubmed/36769312
http://dx.doi.org/10.3390/ijms24032987
work_keys_str_mv AT lina sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT wangyanhong sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT wanganqing sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT zhangjing sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT jiachaoran sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT yuchunlei sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT songzhenbo sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT wangshuyue sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT liulei sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT yijingwen sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT baoyongli sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT huangyanxin sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression
AT sunluguo sts1andsts2phosphataseinhibitorbaicaleinenhancestheexpansionofhematopoieticandprogenitorstemcellsandalleviates5fluorouracilinducedmyelosuppression