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一种具有Myc型HLH基序的新型E2F结合蛋白通过形成异源二聚体刺激E2F依赖性转录。

A novel E2F binding protein with Myc-type HLH motif stimulates E2F-dependent transcription by forming a heterodimer.

作者信息

Suzuki M, Okuyama S, Okamoto S, Shirasuna K, Nakajima T, Hachiya T, Nojima H, Sekiya S, Oda K

机构信息

Department of Biological Science and Technology, Science University of Tokyo, Chiba, Japan.

出版信息

Oncogene. 1998 Aug 20;17(7):853-65. doi: 10.1038/sj.onc.1202163.

Abstract

The human embryonal carcinoma cells NEC14 can be induced to differentiate morphologically by the addition of 10(-2) M N, N'-hexamethylene-bis-acetamide and cease to grow in several days. Transcription factors of the E2F/DP family have been shown to be closely related to the regulation of cell proliferation. To analyse cellular proteins which interact with E2F in NEC14 cells, cDNA clones encoding E2F binding proteins were isolated from a lambdaZAP II NEC14 cell library with the 32P-labeled GST (Glutathione S-transferase)-E2F-1 fusion protein as a probe. One of the clones encodes E2FBP1 which has the helix-loop-helix (HLH) motif, but lacks the basic domain and the zipper structure usually found at N- and C-terminal sides to the HLH motif, respectively. The arrangement of amino acids in the helix 1 and helix 2 regions is quite similar to those of Mxi and Mad, but different from those of E2F-1 and DP-1. Western blot analysis of the immunoprecipitates prepared with anti-E2FBP1 antibody showed that E2FBP1 associates with both E2F-1 and DP-1 in vivo. E2FBP1 alone has no DNA binding activity, but bind to the E2F site through heterodimerization with E2F-1 but not with DP-1. Although E2FBP1 lacks the transactivation domain, it stimulates E2F site-dependent transcription in cooperation with E2F-1.

摘要

人胚胎癌细胞NEC14在添加10⁻² M N,N'-己二亚基双乙酰胺后可被诱导发生形态分化,并在数天内停止生长。E2F/DP家族的转录因子已被证明与细胞增殖的调控密切相关。为了分析NEC14细胞中与E2F相互作用的细胞蛋白,以32P标记的谷胱甘肽S-转移酶(GST)-E2F-1融合蛋白为探针,从λZAP II NEC14细胞文库中分离出编码E2F结合蛋白的cDNA克隆。其中一个克隆编码E2FBP1,它具有螺旋-环-螺旋(HLH)基序,但分别缺少通常在HLH基序N端和C端发现的碱性结构域和拉链结构。螺旋1区和螺旋2区的氨基酸排列与Mxi和Mad非常相似,但与E2F-1和DP-1不同。用抗E2FBP1抗体制备的免疫沉淀物的蛋白质印迹分析表明,E2FBP1在体内与E2F-1和DP-1都相关联。单独的E2FBP1没有DNA结合活性,但通过与E2F-1而非DP-1异源二聚化与E2F位点结合。尽管E2FBP1缺乏反式激活结构域,但它与E2F-1协同刺激E2F位点依赖性转录。

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