Zhang Zhe, Zhang Feng, Cheng Zhi-Jun, Liu Ling-Long, Lin Qi-Bing, Wu Fu-Qing, Zhang Huan, Wang Jiu-Lin, Wang Jie, Guo Xiu-Ping, Zhang Xin, Lei Cai-Lin, Zhao Zhi-Chao, Zhu Shan-Shan, Wan Jian-Min
National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing 100081, PR China.
National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, PR China.
Plant Sci. 2017 Oct;263:168-176. doi: 10.1016/j.plantsci.2017.06.013. Epub 2017 Jul 3.
Histone recognition is important for understanding the mechanisms of histone modification, which play a pivotal role in transcriptional regulation during plant development. Here, we identified three cysteine-tryptophan (CW)-domain containing zinc finger (ZF) proteins involved in histone recognition, namely OsCW-ZF3, OsCW-ZF5 and OsCW-ZF7. Protein sequence analysis showed that they have two unknown motifs in addition to the CW domain. All three OsCW-ZFs were expressed in aerial tissues, with relatively high levels in developing panicles. Subcellular localization revealed that the OsCW-ZFs target the cell nucleus and CW domains are not necessary for their nuclear localization. In contrast to OsCW-ZF3 and OsCW-ZF5 where the CW domains bind histone H3 lysine 4 with different methylated forms (H3K4me), the CW domain from OsCW-ZF7 recognizes only trimethylated histone H3 lysine 4 (H3K4me3). Analysis of mutant suggested that three conserved tryptophan residues in the CW domain are essential for binding to H3K4me. Further study found that OsCW-ZF7 interacts with TAFII20, a transcription initiation factor TFIID 20kDa subunit. Knockout of OsCW-ZF7 caused defective development of awns. This study provides new insights into our understanding of the CW domain and lays a foundation for further investigation of its roles in rice.
组蛋白识别对于理解组蛋白修饰机制非常重要,而组蛋白修饰在植物发育过程中的转录调控中起着关键作用。在此,我们鉴定出了三种参与组蛋白识别的含半胱氨酸-色氨酸(CW)结构域的锌指(ZF)蛋白,即OsCW-ZF3、OsCW-ZF5和OsCW-ZF7。蛋白质序列分析表明,除了CW结构域外,它们还有两个未知基序。所有这三种OsCW-ZF蛋白均在地上组织中表达,在发育中的稻穗中表达水平相对较高。亚细胞定位显示,OsCW-ZF蛋白定位于细胞核,且CW结构域对于它们的核定位并非必需。与OsCW-ZF3和OsCW-ZF5不同,它们的CW结构域能结合不同甲基化形式的组蛋白H3赖氨酸4(H3K4me),而OsCW-ZF7的CW结构域仅识别三甲基化的组蛋白H3赖氨酸4(H3K4me3)。对突变体的分析表明,CW结构域中的三个保守色氨酸残基对于与H3K4me结合至关重要。进一步研究发现,OsCW-ZF7与转录起始因子TFIID 20kDa亚基TAFII20相互作用。敲除OsCW-ZF7导致芒发育缺陷。这项研究为我们理解CW结构域提供了新的见解,并为进一步研究其在水稻中的作用奠定了基础。