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人类调节因子X4(RFX4)是一种睾丸特异性二聚体DNA结合蛋白,可与其他人类RFX成员协同作用。

Human regulatory factor X 4 (RFX4) is a testis-specific dimeric DNA-binding protein that cooperates with other human RFX members.

作者信息

Morotomi-Yano Keiko, Yano Ken-ichi, Saito Hiroko, Sun Zijie, Iwama Atsushi, Miki Yoshio

机构信息

Department of Molecular Diagnosis, Cancer Institute, Japanese Foundation for Cancer Research, 1-37-1 Kami-ikebukuro, Toshima-ku, Tokyo 170-8455, Japan.

出版信息

J Biol Chem. 2002 Jan 4;277(1):836-42. doi: 10.1074/jbc.M108638200. Epub 2001 Oct 26.

Abstract

Regulatory factor X (RFX) members are evolutionarily conserved transcription factors that share a highly conserved winged helix DNA-binding domain. Human RFX4 has been isolated from breast cancer as a partial cDNA encoding a short RFX-type DNA-binding domain fused to the estrogen receptor, but the entire structure of RFX4 has been unknown. Here, we report the molecular cloning and characterization of human RFX4. RFX4 contains evolutionarily conserved regions, including a RFX-type DNA-binding domain, a dimerization domain, and other conserved regions, and is closely related to RFX1, RFX2, and RFX3 in structure. The expression of RFX4 is restricted to testis. In vitro synthesized RFX4 protein bound to typical RFX binding sites in a sequence-dependent manner. Immunoprecipitation analyses showed that RFX4 interacts physically with RFX2, RFX3, and RFX4 itself but not with RFX1. In contrast to other mammalian RFX members that form dimers, RFX4 is revealed to have no distinct transcriptional activation domains. By using a chimeric protein of RFX1 and RFX4, the C-terminal domain of RFX4 was shown to be a possible transcriptional repression domain. Taken together, these results indicate that RFX4 is the first mammalian member of RFX family without transcriptional activation capacity and might function through selective interactions with other RFX members in transcriptional regulation.

摘要

调控因子X(RFX)家族成员是进化上保守的转录因子,它们共享一个高度保守的翼状螺旋DNA结合结构域。人RFX4最初是从乳腺癌中分离出来的,其部分cDNA编码一个与雌激素受体融合的短RFX型DNA结合结构域,但RFX4的完整结构一直未知。在此,我们报告了人RFX4的分子克隆及特性。RFX4包含进化上保守的区域,包括一个RFX型DNA结合结构域、一个二聚化结构域和其他保守区域,并且在结构上与RFX1、RFX2和RFX3密切相关。RFX4的表达仅限于睾丸。体外合成的RFX4蛋白以序列依赖的方式结合到典型的RFX结合位点。免疫沉淀分析表明,RFX4与RFX2、RFX3以及RFX4自身存在物理相互作用,但不与RFX1相互作用。与其他形成二聚体的哺乳动物RFX家族成员不同,RFX4没有明显的转录激活结构域。通过使用RFX1和RFX4的嵌合蛋白,RFX4的C末端结构域被证明可能是一个转录抑制结构域。综上所述,这些结果表明RFX4是RFX家族中首个没有转录激活能力的哺乳动物成员,并且可能在转录调控中通过与其他RFX家族成员的选择性相互作用发挥功能。

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