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阐明负责异二聚体Mxd1/Max b-HLH-LZ特异性形成及其与E-box序列结合的结构决定因素。

Elucidation of the structural determinants responsible for the specific formation of heterodimeric Mxd1/Max b-HLH-LZ and its binding to E-box sequences.

作者信息

Montagne Martin, Naud Jean-François, Lavigne Pierre

机构信息

Département de Pharmacologie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, 3001, 12e Avenue Nord, Sherbrooke, QC, Canada.

出版信息

J Mol Biol. 2008 Feb 8;376(1):141-52. doi: 10.1016/j.jmb.2007.11.062. Epub 2007 Nov 28.

Abstract

The proteins of the Mxd family (formally known as Mad) are antagonists of the oncoprotein c-Myc. They compete with c-Myc for their obligate partner Max to prevent the c-Myc/Max heterodimer from binding to E-box sequences in the target gene promoters. In cancer cells, where Myc is overexpressed, the expression of Mxd proteins is usually insufficient or abrogated. However, the reintroduction of Mxd1 expression in these cells prevents growth and proliferation. While the antagonism of c-Myc functions by Mxd proteins is of potential relevance for the development of cancer treatment strategies, the structural determinants responsible for the specific heterodimerization between the Mxd and the Max b-helix-loop-helix-leucine zippers are not fully understood. Moreover, whether the heterodimer is assembled on DNA or in the nucleoplasm prior to DNA binding is under debate. In this article, we demonstrate that Mxd1 D112a and Max N78a and H81d, which are located in the leucine zippers of the proteins, can dictate the specificity of heterodimerization and whether or not the Mxd1/Max/DNA complex forms. Our results also indicate that additional specific determinants exist in the helix-loop-helix domains of Max and Mxd1. Finally, we provide evidence that heterodimerization must precede DNA binding in vivo.

摘要

Mxd家族蛋白(以前称为Mad)是癌蛋白c-Myc的拮抗剂。它们与c-Myc竞争其必需伴侣Max,以阻止c-Myc/Max异二聚体与靶基因启动子中的E-box序列结合。在Myc过表达的癌细胞中,Mxd蛋白的表达通常不足或缺失。然而,在这些细胞中重新引入Mxd1的表达可阻止生长和增殖。虽然Mxd蛋白对c-Myc功能的拮抗作用与癌症治疗策略的开发潜在相关,但负责Mxd与Max b-螺旋-环-螺旋-亮氨酸拉链之间特异性异二聚化的结构决定因素尚未完全了解。此外,异二聚体是在DNA结合之前在DNA上还是在核质中组装仍存在争议。在本文中,我们证明位于蛋白质亮氨酸拉链中的Mxd1 D112a和Max N78a及H81d可以决定异二聚化的特异性以及Mxd1/Max/DNA复合物是否形成。我们的结果还表明,Max和Mxd1的螺旋-环-螺旋结构域中存在其他特定的决定因素。最后,我们提供证据表明异二聚化在体内必须先于DNA结合发生。

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