Cai Ying, Xu Zhixiong, Xie Jingping, Ham Amy-Joan L, Koury Mark J, Hiebert Scott W, Brandt Stephen J
Department of Medicine, Vanderbilt University Medical Center, Nashville, TN 37232, USA.
Biochem Biophys Res Commun. 2009 Dec 11;390(2):295-301. doi: 10.1016/j.bbrc.2009.09.111. Epub 2009 Sep 30.
The TAL1 (or SCL) gene, originally discovered through its involvement by a chromosomal translocation in T-cell acute lymphoblastic leukemia, encodes a basic helix-loop-helix (bHLH) transcription factor essential for hematopoietic and vascular development. To identify its interaction partners, we expressed a tandem epitope-tagged protein in murine erythroleukemia (MEL) cells and characterized affinity-purified Tal1-containing complexes by liquid chromatography-tandem mass spectrometry analysis. In addition to known interacting proteins, two proteins related to the Eight-Twenty-One (ETO) corepressor, Eto2/Mtg16 and Mtgr1, were identified from the peptide fragments analyzed. Tal1 interaction with Eto2 and Mtgr1 was verified by coimmunoprecipitation analysis in Tal1, Eto2-, and Mtgr1-transfected COS-7 cells, MEL cells expressing V5 epitope-tagged Tal1 protein, and non-transfected MEL cells. Mapping analysis with Gal4 fusion proteins demonstrated a requirement for the bHLH domain of Tal1 and TAF110 domain of Eto2 for their interaction, and transient transfection and glutathione S-transferase pull-down analysis showed that Mtgr1 and Eto2 enhanced the other's association with Tal1. Enforced expression of Eto2 in differentiating MEL cells inhibited the promoter of the Protein 4.2 (P4.2) gene, a direct target of TAL1 in erythroid progenitors, and transduction of Eto2 and Mtgr1 augmented Tal1-mediated gene repression. Finally, chromatin immunoprecipitation analysis revealed that Eto2 occupancy of the P4.2 promoter in MEL cells decreased with differentiation, in parallel with a decline in Eto2 protein abundance. These results identify Eto2 and Mtgr1 as authentic interaction partners of Tal1 and suggest they act as heteromeric corepressors of this bHLH transcription factor during erythroid differentiation.
TAL1(或SCL)基因最初是通过其在T细胞急性淋巴细胞白血病中的染色体易位参与而被发现的,它编码一种对造血和血管发育至关重要的碱性螺旋-环-螺旋(bHLH)转录因子。为了鉴定其相互作用伙伴,我们在小鼠红白血病(MEL)细胞中表达了一种串联表位标签蛋白,并通过液相色谱-串联质谱分析对亲和纯化的含Tal1复合物进行了表征。除了已知的相互作用蛋白外,从分析的肽片段中鉴定出了两种与八二十一(ETO)共抑制因子相关的蛋白,即Eto2/Mtg16和Mtgr1。通过在转染了Tal1、Eto2和Mtgr1的COS-7细胞、表达V5表位标签Tal1蛋白的MEL细胞以及未转染的MEL细胞中进行共免疫沉淀分析,验证了Tal1与Eto2和Mtgr1的相互作用。用Gal4融合蛋白进行的定位分析表明,Tal1的bHLH结构域和Eto2的TAF110结构域是它们相互作用所必需的,瞬时转染和谷胱甘肽S-转移酶下拉分析表明,Mtgr1和Eto2增强了彼此与Tal1的结合。在分化的MEL细胞中强制表达Eto2抑制了蛋白质4.2(P4.2)基因的启动子,P4.2基因是红系祖细胞中TAL1的直接靶点,而Eto2和Mtgr1的转导增强了Tal1介导的基因抑制。最后,染色质免疫沉淀分析表明,MEL细胞中Eto2在P4.2启动子上的占据随着分化而减少,与Eto2蛋白丰度的下降平行。这些结果确定Eto2和Mtgr1是Tal1真正的相互作用伙伴,并表明它们在红系分化过程中作为这种bHLH转录因子的异源共抑制因子发挥作用。