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非洲爪蟾NFI-X的DNA结合及转录活性受新型C末端结构域调控。

Regulation of the DNA-binding and transcriptional activities of Xenopus laevis NFI-X by a novel C-terminal domain.

作者信息

Roulet E, Armentero M T, Krey G, Corthésy B, Dreyer C, Mermod N, Wahli W

机构信息

Institut de Biologie Animale, Université de Lausanne, Switzerland.

出版信息

Mol Cell Biol. 1995 Oct;15(10):5552-62. doi: 10.1128/MCB.15.10.5552.

Abstract

The nuclear factor I (NFI) family consists of sequence-specific DNA-binding proteins that activate both transcription and adenovirus DNA replication. We have characterized three new members of the NFI family that belong to the Xenopus laevis NFI-X subtype and differ in their C-termini. We show that these polypeptides can activate transcription in HeLa and Drosophila Schneider line 2 cells, using an activation domain that is subdivided into adjacent variable and subtype-specific domains each having independent activation properties in chimeric proteins. Together, these two domains constitute the full NFI-X transactivation potential. In addition, we find that the X. laevis NFI-X proteins are capable of activating adenovirus DNA replication through their conserved N-terminal DNA-binding domains. Surprisingly, their in vitro DNA-binding activities are specifically inhibited by a novel repressor domain contained within the C-terminal part, while the dimerization and replication functions per se are not affected. However, inhibition of DNA-binding activity in vitro is relieved within the cell, as transcriptional activation occurs irrespective of the presence of the repressor domain. Moreover, the region comprising the repressor domain participates in transactivation. Mechanisms that may allow the relief of DNA-binding inhibition in vivo and trigger transcriptional activation are discussed.

摘要

核因子I(NFI)家族由激活转录和腺病毒DNA复制的序列特异性DNA结合蛋白组成。我们已鉴定出NFI家族的三个新成员,它们属于非洲爪蟾NFI-X亚型,且C末端不同。我们发现这些多肽可利用一个激活结构域在HeLa细胞和果蝇Schneider 2细胞中激活转录,该激活结构域可细分为相邻的可变结构域和亚型特异性结构域,每个结构域在嵌合蛋白中都具有独立的激活特性。这两个结构域共同构成了完整的NFI-X反式激活潜能。此外,我们发现非洲爪蟾NFI-X蛋白能够通过其保守的N末端DNA结合结构域激活腺病毒DNA复制。令人惊讶的是,它们的体外DNA结合活性受到C末端部分所含一个新型阻遏结构域的特异性抑制,而二聚化和复制功能本身不受影响。然而,体外DNA结合活性的抑制在细胞内可得到缓解,因为无论阻遏结构域是否存在都会发生转录激活。此外,包含阻遏结构域的区域参与反式激活。本文讨论了在体内可能解除DNA结合抑制并触发转录激活的机制。

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