Département de Biochimie, Faculté de Médecine et des Sciences de la Santé, Institut de Pharmacologie de Sherbrooke, Université de Sherbrooke, 3001, 12e avenue Nord, Sherbrooke, QC, J1H 5N4, Canada.
J Biomol NMR. 2013 Oct;57(2):103-16. doi: 10.1007/s10858-013-9770-6. Epub 2013 Aug 24.
Myc-interacting zinc finger protein-1 (Miz-1) is a BTB/POZ transcription factor that activates the transcription of cytostatic genes, such as p15(INK4B) or p21(CIP1). The C-terminus of Miz-1 contains 13 consensus C2H2 zinc finger domains (ZF). ZFs 1-4 have been shown to interact with SMAD3/4, while the remaining ZFs are expected to bind the promoters of target genes. We have noted unusual features in ZF 5 and the linker between ZFs 5 and 6. Indeed, a glutamate is found instead of the conserved basic residue two positions before the second zinc-coordinating histidine on the ZF 5 helix, and the linker sequence is DTDKE in place of the classical TGEKP sequence. In a canonical ββα fold, such unusual primary structure elements should cause severe electrostatic repulsions. In this context, we have characterized the structure and the dynamics of a Miz-1 construct comprising ZFs 5-8 (Miz 5-8) by solution-state NMR. Whilst ZFs 5, 7 and 8 were shown to adopt the classical ββα fold for C2H2 ZFs, the number of long-range NOEs was insufficient to define a classical fold for ZF 6. We show by using (15)N-relaxation dispersion experiments that this lack of NOEs is due to the presence of extensive motions on the μs-ms timescale. Since this negatively charged region would have to be located near the phosphodiester backbone in a DNA complex, we propose that in addition to promoting conformational searches, it could serve as a hinge region to keep ZFs 1-4 away from DNA.
Myc 相互作用锌指蛋白-1(Miz-1)是一种 BTB/POZ 转录因子,可激活细胞周期停滞基因的转录,如 p15(INK4B)或 p21(CIP1)。Miz-1 的 C 端包含 13 个公认的 C2H2 锌指结构域(ZF)。已经表明 ZF1-4 与 SMAD3/4 相互作用,而其余的 ZF 预计与靶基因的启动子结合。我们注意到 ZF5 和 ZF5 与 6 之间的连接体中存在不寻常的特征。事实上,在 ZF5 螺旋上第二个锌配位组氨酸前两个位置发现了一个谷氨酸,而不是保守的碱性残基,并且连接序列是 DTDKE 而不是经典的 TGEKP 序列。在典型的ββα折叠中,这种不寻常的一级结构元件应该会引起严重的静电排斥。在这种情况下,我们通过溶液状态 NMR 对包含 ZF5-8(Miz5-8)的 Miz-1 结构进行了结构和动力学表征。虽然 ZF5、7 和 8 被证明采用了经典的 C2H2 ZF 的ββα折叠,但长程 NOE 的数量不足以定义 ZF6 的经典折叠。我们通过使用(15)N 弛豫分散实验表明,这种缺乏 NOE 是由于在μs-ms 时间尺度上存在广泛的运动。由于这个带负电荷的区域在 DNA 复合物中必须位于磷酸二酯骨架附近,因此我们提出,除了促进构象搜索外,它还可以作为铰链区域,使 ZF1-4 远离 DNA。