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对溶液中游离及与DNA结合的pbx1三螺旋-环-螺旋(TALE)同源异型结构域蛋白的核磁共振研究:HoxB1-Pbx1-DNA复合物组装机制的推测

NMR studies of the pbx1 TALE homeodomain protein free in solution and bound to DNA: proposal for a mechanism of HoxB1-Pbx1-DNA complex assembly.

作者信息

Jabet C, Gitti R, Summers M F, Wolberger C

机构信息

Department of Biophysics and Biophysical Chemistry and Howard Hughes Medical Institute, Johns Hopkins School of Medicine, Baltimore, MD, 21205, USA.

出版信息

J Mol Biol. 1999 Aug 20;291(3):521-30. doi: 10.1006/jmbi.1999.2983.

Abstract

The Hox homeodomain proteins are transcription factors involved in developmental regulation. Many of the vertebrate Hox proteins bind DNA cooperatively with the Pbx1 homeodomain protein. The crystal structure of a human HoxB1-Pbx1-DNA ternary complex revealed that interactions between the two proteins are mediated by the HoxB1 hexapeptide, which inserts into a hydrophobic pocket in Pbx1. It was also found that the Pbx1 DNA-binding domain is larger than the canonical three-helix homeodomain, containing an additional alpha-helix that is joined to the C terminus of the homeodomain by a turn of 310helix. These extra C-terminal residues had previously been shown to augment the cooperative interaction of Pbx1 with Hox partners, as well as enhancing the DNA binding of monomeric Pbx1. In order to characterize the role of the fourth Pbx1 helix in greater detail, we have examined the backbone structure of the enlarged Pbx1 DNA-binding domain in solution by(1)H,(15)N and(13)C multidimensional NMR spectroscopy. Our results show that the additional alpha-helix of Pbx1 is unfolded when the protein is free in solution and that its folding is triggered by binding of Pbx1 to DNA. In contrast, no change in conformation is observed upon mixing the HoxB1 protein with Pbx1 in the absence of DNA. This study suggests a model for the assembly of a stable HoxB1-Pbx1-DNA ternary complex.

摘要

Hox 同源结构域蛋白是参与发育调控的转录因子。许多脊椎动物的 Hox 蛋白与 Pbx1 同源结构域蛋白协同结合 DNA。人 HoxB1-Pbx1-DNA 三元复合物的晶体结构表明,这两种蛋白之间的相互作用是由插入 Pbx1 中一个疏水口袋的 HoxB1 六肽介导的。还发现 Pbx1 DNA 结合结构域比典型的三螺旋同源结构域大,包含一个额外的α螺旋,该螺旋通过一个 310 螺旋的转角与同源结构域的 C 末端相连。这些额外的 C 末端残基先前已被证明可增强 Pbx1 与 Hox 伙伴的协同相互作用,以及增强单体 Pbx1 的 DNA 结合。为了更详细地描述 Pbx1 第四个螺旋的作用,我们通过(1)H、(15)N 和(13)C 多维核磁共振光谱研究了溶液中扩大的 Pbx1 DNA 结合结构域的主链结构。我们的结果表明,当 Pbx1 蛋白在溶液中游离时,其额外的α螺旋是未折叠的,并且其折叠是由 Pbx1 与 DNA 的结合触发的。相比之下,在没有 DNA 的情况下将 HoxB1 蛋白与 Pbx1 混合时,未观察到构象变化。这项研究提出了一个稳定的 HoxB1-Pbx1-DNA 三元复合物组装模型。

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