Biozentrum of University Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
Protein Sci. 2012 May;21(5):667-76. doi: 10.1002/pro.2051. Epub 2012 Mar 29.
Recently, we showed that leucine zipper (LZ) motifs of basic leucine zipper (bZIP) transcription factors GCN4 and c-Jun are capable of catalyzing degradation of RNA (Nikolaev et al., PLoS ONE 2010; 5:e10765). This observation is intriguing given the tight regulation of RNA turnover control and the antiquity of bZIP transcription factors. To support further mechanistic studies, herein, we elucidated RNA binding interface of the GCN4 leucine zipper motif from yeast. Solution NMR experiments showed that the LZ-RNA interaction interface is located in the first two heptads of LZ moiety, and that only the dimeric (coiled coil) LZ conformation is capable of binding RNA. Site-directed mutagenesis of the LZ-GCN4 RNA binding interface showed that substrate binding is facilitated by lysine and arginine side chains, and that at least one nucleophilic residue is located in proximity to the RNA phosphate backbone. Further studies in the context of full-length bZIP factors are envisaged to address the biological relevance of LZ RNase activity.
最近,我们发现碱性亮氨酸拉链(bZIP)转录因子 GCN4 和 c-Jun 的亮氨酸拉链(LZ)模体能够催化 RNA 的降解(Nikolaev 等人, PLoS ONE 2010;5:e10765)。鉴于 RNA 周转控制的严格调节和 bZIP 转录因子的古老性,这一观察结果令人着迷。为了支持进一步的机制研究,本文阐明了酵母中 GCN4 亮氨酸拉链模体的 RNA 结合界面。溶液 NMR 实验表明,LZ-RNA 相互作用界面位于 LZ 部分的前两个七肽中,并且只有二聚体(卷曲螺旋)LZ 构象能够结合 RNA。对 LZ-GCN4 RNA 结合界面的定点突变表明,底物结合由赖氨酸和精氨酸侧链促进,并且至少有一个亲核残基位于 RNA 磷酸骨架附近。预计在全长 bZIP 因子的背景下进行进一步研究,以解决 LZ 核糖核酸酶活性的生物学相关性。