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配对DNA结合结构域高度保守的β-发夹结构是Pax-Ets三元复合物组装所必需的。

The highly conserved beta-hairpin of the paired DNA-binding domain is required for assembly of Pax-Ets ternary complexes.

作者信息

Wheat W, Fitzsimmons D, Lennox H, Krautkramer S R, Gentile L N, McIntosh L P, Hagman J

机构信息

Division of Basic Immunology, Department of Medicine, National Jewish Medical and Research Center, Denver, Colorado 80206, USA.

出版信息

Mol Cell Biol. 1999 Mar;19(3):2231-41. doi: 10.1128/MCB.19.3.2231.

Abstract

Pax family transcription factors bind DNA through the paired domain. This domain, which is comprised of two helix-turn-helix motifs and a beta-hairpin structure, is a target of mutations in congenital disorders of mice and humans. Previously, we showed that Pax-5 (B-cell-specific activator protein) recruits proteins of the Ets proto-oncogene family to bind a composite DNA site that is essential for efficient transcription of the early-B-cell-specific mb-1 promoter. Here, evidence is provided for specific interactions between Ets-1 and the amino-terminal subdomains of Pax proteins. By tethering deletion fragments of Pax-5 to a heterologous DNA-binding domain, we show that 73 amino acids (amino acids 12 to 84) of its amino-terminal subdomain can recruit the ETS domain of Ets-1 to bind the composite site. Furthermore, an amino acid (Gln22) within the highly conserved beta-hairpin motif of Pax-5 is essential for efficient recruitment of Ets-1. The ability to recruit Ets proteins to bind DNA is a shared property of Pax proteins, as demonstrated by cooperative DNA binding of Ets-1 with sequences derived from the paired domains of Pax-2 and Pax-3. The strict conservation of sequences required for recruitment of Ets proteins suggests that Pax-Ets interactions are important for regulating transcription in diverse tissues during cellular differentiation.

摘要

帕克斯家族转录因子通过配对结构域与DNA结合。该结构域由两个螺旋-转角-螺旋基序和一个β-发夹结构组成,是小鼠和人类先天性疾病中突变的靶点。此前,我们发现帕克斯-5(B细胞特异性激活蛋白)招募Ets原癌基因家族的蛋白,以结合一个复合DNA位点,该位点对于早期B细胞特异性mb-1启动子的高效转录至关重要。本文提供了Ets-1与帕克斯蛋白氨基末端亚结构域之间特异性相互作用的证据。通过将帕克斯-5的缺失片段连接到异源DNA结合结构域,我们发现其氨基末端亚结构域的73个氨基酸(第12至84位氨基酸)可以招募Ets-1的ETS结构域来结合复合位点。此外,帕克斯-5高度保守的β-发夹基序中的一个氨基酸(Gln22)对于有效招募Ets-1至关重要。招募Ets蛋白与DNA结合的能力是帕克斯蛋白的共同特性,如Ets-1与源自帕克斯-2和帕克斯-3配对结构域的序列的协同DNA结合所示。招募Ets蛋白所需序列的严格保守性表明,帕克斯-Ets相互作用对于细胞分化过程中不同组织的转录调控很重要。

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