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HLH-LZ蛋白Max和c-Myc的亮氨酸拉链优先形成异源二聚体。

The leucine zippers of the HLH-LZ proteins Max and c-Myc preferentially form heterodimers.

作者信息

Muhle-Goll C, Nilges M, Pastore A

机构信息

EMBL, Heidelberg, Germany.

出版信息

Biochemistry. 1995 Oct 17;34(41):13554-64. doi: 10.1021/bi00041a035.

Abstract

c-Myc and Max are members of a subfamily of the helix-loop-helix transcription-regulating proteins. Their function is mediated by switches in the dimerization partners; c-Myc does not homodimerize in vivo but competes with Mad, another member of the subfamily, to form heterodimers with Max, leading to either activation or repression of transcription. Max is also able to form homodimers. In an attempt to identify which regions of the proteins carry the information to determine specific recognition of the dimerization partner, we have investigated the dimerization properties of synthetic peptides corresponding to the leucine zipper sequence of Max and c-Myc using circular dichroism and nuclear magnetic resonance techniques. We show that the heterodimer is obtained readily by simply mixing the peptides and that at neutral pH it is more stable than the homodimer of the Max leucine zipper. We have shown in a previous paper [Muhle-Goll, C. et al. (1994) Biochemistry 33, 11296-11306] that the leucine zipper of c-Myc does not form stable homodimers under these conditions. Thus, the leucine zipper regions of these two proteins by themselves display the same behavior as the entire proteins. However, even the heterodimer is less stable than dimers of leucine zippers of the basic leucine zipper family such as GCN4 and Fos-Jun. The specificity of the interaction between different monomers can be explained by polar interactions. We investigate the structural role of the polar and charged residues in the hydrophobic interface by molecular-modeling studies.

摘要

c-Myc和Max是螺旋-环-螺旋转录调节蛋白亚家族的成员。它们的功能由二聚化伙伴的切换介导;c-Myc在体内不会形成同型二聚体,而是与该亚家族的另一个成员Mad竞争,与Max形成异源二聚体,从而导致转录的激活或抑制。Max也能够形成同型二聚体。为了确定蛋白质的哪些区域携带决定二聚化伙伴特异性识别的信息,我们使用圆二色性和核磁共振技术研究了与Max和c-Myc的亮氨酸拉链序列相对应的合成肽的二聚化特性。我们表明,通过简单混合肽很容易获得异源二聚体,并且在中性pH条件下它比Max亮氨酸拉链的同型二聚体更稳定。我们在之前的一篇论文[Muhle-Goll, C.等人(1994年)《生物化学》33卷,11296 - 11306页]中表明,在这些条件下c-Myc的亮氨酸拉链不会形成稳定的同型二聚体。因此,这两种蛋白质的亮氨酸拉链区域自身表现出与整个蛋白质相同的行为。然而,即使是异源二聚体也比碱性亮氨酸拉链家族(如GCN4和Fos-Jun)的亮氨酸拉链二聚体稳定性更低。不同单体之间相互作用的特异性可以通过极性相互作用来解释。我们通过分子模拟研究来探究疏水界面中极性和带电荷残基的结构作用。

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