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Hox蛋白的五肽基序是与Pbx1协同结合DNA所必需的,它与Pbx1发生物理接触,并增强Pbx1与DNA的结合。

The pentapeptide motif of Hox proteins is required for cooperative DNA binding with Pbx1, physically contacts Pbx1, and enhances DNA binding by Pbx1.

作者信息

Knoepfler P S, Kamps M P

机构信息

Department of Pathology, School of Medicine, University of California, San Diego, La Jolla 92093, USA.

出版信息

Mol Cell Biol. 1995 Oct;15(10):5811-9. doi: 10.1128/MCB.15.10.5811.

Abstract

The vertebrate Hox genes, which represent a subset of all homeobox genes, encode proteins that regulate anterior-posterior positional identity during embryogenesis and are cognates of the Drosophila homeodomain proteins encoded by genes composing the homeotic complex (HOM-C). Recently, we demonstrated that multiple Hox proteins bind DNA cooperatively with both Pbx1 and its oncogenic derivative, E2A-Pbx1. Here, we show that the highly conserved pentapeptide motif F/Y-P-W-M-R/K, which occurs in numerous Hox proteins and is positioned 8 to 50 amino acids N terminal to the homeodomain, is essential for cooperative DNA binding with Pbx1 and E2A-Pbx1. Point mutational analysis demonstrated that the tryptophan and methionine residues within the core of this motif were critical for cooperative DNA binding. A peptide containing the wild-type pentapeptide sequence, but not one in which phenylalanine was substituted for tryptophan, blocked the ability of Hox proteins to bind cooperatively with Pbx1 or E2A-Pbx1, suggesting that the pentapeptide itself provides at least one surface through which Hox proteins bind Pbx1. Furthermore, the same peptide, but not the mutant peptide, stimulated DNA binding by Pbx1, suggesting that interaction of Hox proteins with Pbx1 through the pentapeptide motif raises the DNA-binding ability of Pbx1.

摘要

脊椎动物的Hox基因是所有同源异型框基因的一个子集,其编码的蛋白质在胚胎发育过程中调节前后位置身份,并且是由构成同源异型复合体(HOM-C)的基因所编码的果蝇同源结构域蛋白的同源物。最近,我们证明了多种Hox蛋白与Pbx1及其致癌衍生物E2A-Pbx1协同结合DNA。在此,我们表明,高度保守的五肽基序F/Y-P-W-M-R/K存在于众多Hox蛋白中,位于同源结构域N端8至50个氨基酸处,对于与Pbx1和E2A-Pbx1协同结合DNA至关重要。点突变分析表明,该基序核心内的色氨酸和甲硫氨酸残基对于协同结合DNA至关重要。一个包含野生型五肽序列的肽段,而非苯丙氨酸取代色氨酸的肽段,能够阻断Hox蛋白与Pbx1或E2A-Pbx1协同结合的能力,这表明五肽本身至少提供了一个Hox蛋白与Pbx1结合的表面。此外,相同的肽段而非突变肽段能够刺激Pbx1的DNA结合,这表明Hox蛋白通过五肽基序与Pbx1的相互作用提高了Pbx1的DNA结合能力。

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