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Published on: February 27, 2020
Cell proliferation and CD11b expression are controlled independently during HL60 cell differentiation initiated by
M T Drayson1, R H Michell, J Durham
1LRF Differentiation Programme, Division of Immunity & Infection, University of Birmingham, United Kingdom.
Insights
Both all-trans-retinoic acid (ATRA) and 1 alpha,25-dihydroxyvitamin D(3) (D(3)) trigger maturation divisions during myeloid cell differentiation. These divisions are initiated in early G1, but CD11b expression can occur independently of cell cycle stage.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- Cellular differentiation involves complex cell cycle regulation.
- HL60 cells are a human promyelocytic leukemia cell line widely used to study myeloid differentiation.
- 1 alpha,25-dihydroxyvitamin D(3) (D(3)) and all-trans-retinoic acid (ATRA) are potent inducers of monocytic and neutrophil differentiation, respectively.
Purpose of the Study:
- To investigate the cell cycle events during ATRA-induced neutrophil differentiation.
- To compare the cell cycle regulation of monocytic and neutrophil differentiation.
- To determine the relationship between cell cycle changes and the expression of maturation markers like CD11b.
Main Methods:
- Induction of HL60 cell differentiation using D(3) and ATRA.
- Cell cycle analysis using elutriation to isolate cells in specific phases (G1, S).
- Flow cytometry to assess CD11b expression as a marker of differentiation.
Main Results:
- ATRA-induced neutrophil differentiation involves maturation divisions without cell cycle shortening, unlike D(3)-induced monocytic differentiation.
- Both D(3) and ATRA trigger these maturation divisions during a specific "window of sensitivity" in early G1.
- CD11b expression, an early maturation marker, is initiated before the first maturation division and can occur independently of the cell cycle stage.
Conclusions:
- Cell cycle control changes initiating differentiation are restricted to early G1.
- CD11b expression is regulated independently of the cell cycle.
- Differentiating agents employ distinct mechanisms to control proliferation and maturation in myeloid cells.
Abstract:
When 1 alpha,25-dihydroxyvitamin D(3) (D(3)) induces HL60 cells to differentiate to monocytes, a burst of approximately three shortened cell cycles ("maturation divisions") precedes exit from cell cycle and completion of maturation. Here we show that similar maturation divisions occur during neutrophil differentiation induced by all-trans-retinoic acid (ATRA), but without shortening of the cell cycle. Both ATRA and D(3) initiate these maturation divisions as cells pass through a "window of sensitivity" during early G1. We also investigated whether the initiation of maturation divisions and of the expression of CD11b, an early-expressed maturation marker, are linked. Cells treated with D(3) or ATRA start to express CD11b after 9--14 h, before completing the first maturation division. Elutriation was used to isolate small HL60 cells (almost all in G1) and larger cells (in G1 and S phases) from unsynchronized populations. When these were cultured with D(3) or ATRA, most reentered cycle synchronously, multiplied, and differentiated. Following D(3) treatment, the G1-enriched small cells expressed CD11b slightly faster than unsynchronized cultures or fractions dominated by late G1 cells and/or S phase cells. D(3)-induced CD11b expression occurred at a similar rate even in G1 cells that were held at the G1/S boundary by thymidine. In conclusion, changes in the control of the cell cycle that characterize the onset of monocytic and neutrophil differentiation are only triggered in early G1, but CD11b expression can be initiated from most points in the cell cycle. Differentiating agents must therefore regulate the proliferation and the maturation of differentiating myeloid cells by mechanisms that are at least partly independent.
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