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Pbx蛋白与一部分Hox蛋白表现出六肽依赖性的协同DNA结合。

Pbx proteins display hexapeptide-dependent cooperative DNA binding with a subset of Hox proteins.

作者信息

Chang C P, Shen W F, Rozenfeld S, Lawrence H J, Largman C, Cleary M L

机构信息

Department of Pathology, Stanford University Medical Center, California 94305, USA.

出版信息

Genes Dev. 1995 Mar 15;9(6):663-74. doi: 10.1101/gad.9.6.663.

Abstract

The human proto-oncogene PBX1 codes for a homolog of Drosophila extradenticle, a divergent homeo domain protein that modulates the developmental and DNA-binding specificity of select HOM proteins. We demonstrate that wild-type Pbx proteins and chimeric E2a-Pbx1 oncoproteins cooperatively bind a consensus DNA probe with HoxB4, B6, and B7 of the Antennapedia class of Hox/HOM proteins. Specificity of Hox-Pbx interactions was suggested by the inability of Pbx proteins to cooperatively bind the synthetic DNA target with HoxA10 or Drosophila even-skipped. Site-directed mutagenesis showed that the hexapeptide motif (IYPWMK) upstream of the Hox homeo domain was essential for HoxB6 and B7 to cooperatively bind DNA with Pbx proteins. Engraftment of the HoxB7 hexapeptide onto HoxA10 endowed it with robust cooperative properties, demonstrating a functional role for the highly conserved hexapeptide element as one of the molecular determinants delimiting Hox-Pbx cooperativity. The Pbx homeo domain was necessary but not sufficient for cooperativity, which required conserved amino acids carboxy-terminal of the homeo domain. These findings demonstrate that interactions between Hox and Pbx proteins modulate their DNA-binding properties, suggesting that Pbx and Hox proteins act in parallel as heterotypic complexes to regulate expression of specific subordinate genes.

摘要

人类原癌基因PBX1编码果蝇extra - denticle的同源物,extra - denticle是一种不同的同源结构域蛋白,可调节特定HOM蛋白的发育和DNA结合特异性。我们证明,野生型Pbx蛋白和嵌合E2a - Pbx1癌蛋白与触角足类Hox/HOM蛋白的HoxB4、B6和B7协同结合共有DNA探针。Pbx蛋白无法与HoxA10或果蝇even - skipped协同结合合成DNA靶标,这表明了Hox - Pbx相互作用的特异性。定点诱变表明,Hox同源结构域上游的六肽基序(IYPWMK)对于HoxB6和B7与Pbx蛋白协同结合DNA至关重要。将HoxB7六肽嫁接到HoxA10上赋予了它强大的协同特性,证明了高度保守的六肽元件作为界定Hox - Pbx协同作用的分子决定因素之一的功能作用。Pbx同源结构域对于协同作用是必要的,但并不充分,协同作用还需要同源结构域羧基末端的保守氨基酸。这些发现表明,Hox和Pbx蛋白之间的相互作用调节了它们的DNA结合特性,这表明Pbx和Hox蛋白作为异型复合物并行发挥作用,以调节特定下游基因的表达。

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