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Title 

DACH1 regulates cell cycle progression of myeloid cells through the control of cyclin D, Cdk 4/6 and p21 Cip1

Authors 

J W LeeH S KimS KimJ HwangY H KimG Y LimW J SohnSuk Ran YoonJ Y KimT S ParkK M ParkZ Y RyooS Lee

Publisher 

Elsevier

Issue Date 

2012

Citation 

Biochemical and Biophysical Research Communications, vol. 420, no. 1, pp. 91-95

Keywords 

CCNDDACH1MLL-AF9Myeloid leukemiaP21 Cip1

Abstract 

The cell-fate determination factor Dachshund, a component of the Retinal Determination Gene Network (RDGN), has a role in breast tumor proliferation through the repression of cyclin D1 and several key regulators of embryonic stem cell function, such as Nanog and Sox2. However, little is known about the role of DACH1 in a myeloid lineage as a cell cycle regulator. Here, we identified the differential expression levels of extensive cell cycle regulators controlled by DACH1 in myeloid progenitor cells. The forced expression of DACH1 induced p27. Kip1 and repressed p21. Cip1, which is a pivotal characteristic of the myeloid progenitor. Furthermore, DACH1 significantly increased the expression of cyclin D1, D3, F, and Cdk 1, 4, and 6 in myeloid progenitor cells. The knockdown of DACH1 blocked the cell cycle progression of HL-60 promyeloblastic cells through the decrease of cyclin D1, D3, F, and Cdk 1, 4, and 6 and increase in p21. Cip1, which in turn decreased the phosphorylation of the Rb protein. The expression of Sox2, Oct4, and Klf4 was significantly up-regulated by the forced expression of DACH1 in mouse myeloid progenitor cells.

ISSN 

0006-291X

Link 

http://dx.doi.org/10.1016/j.bbrc.2012.02.120

Appears in Collections

1. Journal Articles > Journal Articles

Registered Date

2019-05-02


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