Recombinant TAT-BMI-1 fusion protein induces ex vivo expansion of human umbilical cord blood-derived hematopoietic stem cells Journal Article


Authors: Codispoti, B.; Rinaldo, N.; Chiarella, E.; Lupia, M.; Spoleti, C. B.; Marafioti, M. G.; Aloisio, A.; Scicchitano, S.; Giordano, M.; Nappo, G.; Lucchino, V.; Moore, M. A. S.; Zhou, P.; Mesuraca, M.; Bond, H. M.; Morrone, G.
Article Title: Recombinant TAT-BMI-1 fusion protein induces ex vivo expansion of human umbilical cord blood-derived hematopoietic stem cells
Abstract: Transplantation of hematopoietic stem cells (HSCs) is a well-established therapeutic approach for numerous disorders. HSCs are typically derived from bone marrow or peripheral blood after cytokine-induced mobilization. Umbilical cord blood (CB) represents an appealing alternative HSC source, but the small amounts of the individual CB units have limited its applications. The availability of strategies for safe ex vivo expansion of CB-derived HSCs (CB-HSCs) may allow to extend the use of these cells in adult patients and to avoid the risk of insufficient engraftment or delayed hematopoietic recovery. Here we describe a system for the ex vivo expansion of CB-HSCs based on their transient exposure to a recombinant TAT-BMI-1 chimeric protein. BMI-1 belongs to the Polycomb family of epigenetic modifiers and is recognized as a central regulator of HSC self-renewal. Recombinant TAT-BMI-1 produced in bacteria was able to enter the target cells via the HIV TAT-derived protein transduction peptide covalently attached to BMI-1, and conserved its biological activity. Treatment of CB-CD34+ cells for 3 days with repeated addition of 10 nM purified TAT-BMI-1 significantly enhanced total cell expansion as well as that of primitive hematopoietic progenitors in culture. Importantly, TAT-BMI-1-treated CB-CD34+ cells displayed a consistently higher rate of multi-lineage long-term repopulating activity in primary and secondary xenotransplants in immunocompromised mice. Thus, recombinant TAT-BMI-1 may represent a novel, effective reagent for ex vivo expansion of CB-HSC for therapeutic purposes. © Codispoti et al.
Keywords: bmi-1; ex vivo expansion; hematopoietic stem cells (hscs); protein transduction; tat-fusion protein
Journal Title: Oncotarget
Volume: 8
Issue: 27
ISSN: 1949-2553
Publisher: Impact Journals  
Date Published: 2017-07-04
Start Page: 43782
End Page: 43798
Language: English
DOI: 10.18632/oncotarget.15156
PROVIDER: scopus
PUBMED: 28187462
PMCID: PMC5546440
DOI/URL:
Notes: Article -- Export Date: 2 August 2017 -- Source: Scopus
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  1. Malcolm A S Moore
    549 Moore