Xie, Xiaoqing; Patnana, Pradeep Kumar; Frank, Daria; Schütte, Judith; Al-Matary, Yahya; Künstner, Axel; Busch, Hauke; Ahmed, Helal; Liu, Longlong; Engel, Daniel Robert; Dührsen, Ulrich; Rosenbauer, Frank; Von Bubnoff, Nikolas; Lenz, Georg; Khandanpour, Cyrus:
Dose-dependent effect of GFI1 expression in the reconstitution and the differentiation capacity of HSCs
In: Frontiers in Cell and Developmental Biology, Vol. 11 (2023), Article 866847
2023article/chapter in journalOA Gold
MedicineFaculty of Medicine » Essen University Hospital » Clinic for HematologyFaculty of Medicine » Essen University Hospital » Clinic for DermatologyFaculty of Medicine » Essen University Hospital » Institute of Experimental Immunology and ImagingScientific institutes » Center of Medical Biotechnology (ZMB)
Related: 1 publication(s)
Title in English:
Dose-dependent effect of GFI1 expression in the reconstitution and the differentiation capacity of HSCs
Author:
Xie, Xiaoqing
;
Patnana, Pradeep Kumar
;
Frank, Daria
;
Schütte, Judith
;
Al-Matary, Yahya
;
Künstner, Axel
;
Busch, Hauke
;
Ahmed, Helal
;
Liu, Longlong
;
Engel, Daniel RobertUDE
LSF ID
58984
LSF ID
60410
ORCID
0000-0001-7301-353XORCID iD
Other
connected with university
;
Dührsen, UlrichUDE
GND
1073185001
LSF ID
14454
ORCID
0000-0002-4034-9472ORCID iD
Other
connected with university
;
Rosenbauer, Frank
;
Von Bubnoff, Nikolas
;
Lenz, Georg
;
Khandanpour, CyrusUDE
GND
130838004
LSF ID
12956
ORCID
0000-0003-4655-6269ORCID iD
Other
connected with university
corresponding author
Year of publication:
2023
Open Access?:
OA Gold
PubMed ID
Scopus ID
Note:
CA Khandanpour
Language of text:
English
Keyword, Topic:
differentiation ; dose-dependent ; engraftment ; Gfi1 ; HSC

Abstract in English:

GFI1 is a transcriptional repressor and plays a pivotal role in regulating the differentiation of hematopoietic stem cells (HSCs) towards myeloid and lymphoid cells. Serial transplantation of Gfi1 deficient HSCs repopulated whole hematopoietic system but in a competitive setting involving wild-type HSCs, they lose this ability. The underlying mechanisms to this end are poorly understood. To better understand this, we used different mouse strains that express either loss of both Gfi1 alleles (Gfi1-KO), with reduced expression of GFI1 (GFI1-KD) or wild-type Gfi1/GFI1 (Gfi1-/GFI1-WT; corresponding to the mouse and human alleles). We observed that loss of Gfi1 or reduced expression of GFI1 led to a two to four fold lower number of HSCs (defined as Lin−Sca1⁺c-Kit⁺CD150⁺CD48−) compared to GFI1-WT mice. To study the functional influence of different levels of GFI1 expression on HSCs function, HSCs from Gfi1-WT (expressing CD45.1 + surface antigens) and HSCs from GFI1-KD or -KO (expressing CD45.2 + surface antigens) mice were sorted and co-transplanted into lethally irradiated host mice. Every 4 weeks, CD45.1+ and CD45.2 + on different lineage mature cells were analyzed by flow cytometry. At least 16 weeks later, mice were sacrificed, and the percentage of HSCs and progenitors including GMPs, CMPs and MEPs in the total bone marrow cells was calculated as well as their CD45.1 and CD45.2 expression. In the case of co-transplantation of GFI1-KD with Gfi1-WT HSCs, the majority of HSCs (81% ± 6%) as well as the majority of mature cells (88% ± 10%) originated from CD45.2 + GFI1-KD HSCs. In the case of co-transplantation of Gfi1-KO HSCs with Gfi1-WT HSCs, the majority of HSCs originated from CD45.2+ and therefore from Gfi1-KO (61% ± 20%); however, only a small fraction of progenitors and mature cells originated from Gfi1-KO HSCs (<1%). We therefore in summary propose that GFI1 has a dose-dependent role in the self-renewal and differentiation of HSCs.