School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, NSW, 2052, Australia.
School of Molecular Bioscience, University of Sydney, Sydney, NSW, 2006, Australia.
Sci Rep. 2017 Jun 9;7(1):3137. doi: 10.1038/s41598-017-03289-5.
The Krüppel-like factor (KLF) family of transcription factors play critical roles in haematopoiesis. KLF1, the founding member of the family, has been implicated in the control of both erythropoiesis and megakaryopoiesis. Here we describe a novel system using an artificial dominant negative isoform of KLF1 to investigate the role of KLF1 in the erythroid/megakaryocytic switch in vivo. We developed murine cell lines stably overexpressing a GST-KLF1 DNA binding domain fusion protein (GST-KLF1 DBD), as well as lines expressing GST only as a control. Interestingly, overexpression of GST-KLF1 DBD led to an overall reduction in erythroid features and an increase in megakaryocytic features indicative of a reduced function of endogenous KLF1. We simultaneously compared in vivo DNA occupancy of both endogenous KLF1 and GST-KLF1 DBD by ChIP qPCR. Here we found that GST-KLF1 DBD physically displaces endogenous KLF1 at a number of loci, providing novel in vivo evidence of direct competition between DNA binding proteins. These results highlight the role of KLF1 in the erythroid/megakaryocyte switch and suggest that direct competition between transcription factors with similar consensus sequences is an important mechanism in transcriptional regulation.
Krüppel 样因子 (KLF) 转录因子家族在造血中发挥着关键作用。家族的创始成员 KLF1 已被牵涉到红细胞生成和巨核细胞生成的控制中。在这里,我们描述了一种使用人工显性负性 KLF1 同工型来研究 KLF1 在体内红细胞/巨核细胞转换中的作用的新系统。我们开发了稳定过表达 GST-KLF1 DNA 结合域融合蛋白 (GST-KLF1 DBD) 的小鼠细胞系,以及仅表达 GST 的对照系。有趣的是,GST-KLF1 DBD 的过表达导致红细胞特征的总体减少和巨核细胞特征的增加,表明内源性 KLF1 的功能降低。我们同时通过 ChIP-qPCR 比较了体内 GST-KLF1 DBD 和内源性 KLF1 的 DNA 占有率。在这里,我们发现 GST-KLF1 DBD 在许多位置上物理取代了内源性 KLF1,为直接竞争的 DNA 结合蛋白提供了新的体内证据。这些结果突出了 KLF1 在红细胞/巨核细胞转换中的作用,并表明具有相似共识序列的转录因子之间的直接竞争是转录调控中的一个重要机制。