The LMO2 -25 region harbours GATA2- Dependent myeloid enhancer and RUNXDependent T-Lymphoid repressor activity

1Citations
Citations of this article
11Readers
Mendeley users who have this article in their library.

Abstract

Lim domain only 2 (LMO2) is a transcriptional co-factor required for angiogenesis and the specification of haematopoietic cells during development. LMO2 is widely expressed within haematopoiesis with the exception of T-cells. Failure to downregulate LMO2 during T-cell maturation leads to leukaemia, thus underlining the critical nature of context-dependent regulation of LMO2 expression. We previously identified a distal regulatory element of LMO2 (element -25) that cooperates with the proximal promoter in directing haematopoietic expression. Here we dissected the functional activity of element -25 and showed it to consist of two modules that conferred independent and cell-type specific activities: a 3' myeloid enhancer and a 5' T-cell repressor. The myeloid enhancer was bound by GATA2 in progenitors and its activity depended on a highly conserved GATA motif, whereas the T-cell repressor moiety of element -25 was bound by the Core Binding Factor in T-cells and its repressive activity depended on a highly conserved RUNT motif. Since the myeloid enhancer and nearby downstream region is recurrently involved in oncogenic translocations, our data suggest that the -25 enhancer region provides an open chromatin environment prone to translocations, which in turn cause aberrant LMO2expression in T-cells due to the removal of the adjacent T-cell repressor.

Cite

CITATION STYLE

APA

Bonadies, N., Göttgens, B., & Calero-Nieto, F. J. (2015). The LMO2 -25 region harbours GATA2- Dependent myeloid enhancer and RUNXDependent T-Lymphoid repressor activity. PLoS ONE, 10(7). https://doi.org/10.1371/journal.pone.0131577

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free