Fusada Naoki, Masuda Tatsuru, Kuroda Hirofumi, Shimada Hiroshi, Ohta Hiroyuki, Takamiya Ken-Ichiro
Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, 4259, Nagatsuta, Midori-ku, Yokohama, 226-8501, Japan.
Plant Mol Biol. 2005 Nov;59(4):631-45. doi: 10.1007/s11103-005-0579-x.
Cytokinins and light activate the transcription of the cucumber NADPH-protochlorophyllide reductase (POR) gene. We have previously reported that 2.3 kb of the 5'-region of this gene contains a cis-element that is responsive to cytokinin. In this study, to identify the cytokinin-responsive cis-element corresponding to chlorophyll biosynthesis and chloroplast development, we performed transient expression assays in etiolated cucumber cotyledons. A 5'-deletional analysis indicated that a 411-bp fragment (-451 to -40 bp) contained at least one of the cis-elements related to cytokinin-responsiveness. Gel mobility shift assays also detected cytokinin-enhanced binding in this region. DNase I footprinting analysis, using a 150-bp fragment (-490 to -340 bp) as the probe, identified the cytokinin-enhanced protected sequence as 5'-ATATTAGTGATAT-3'. More detailed gel mobility shift and competition analyses identified 5'-TATTAG-3' as the sequence critical for cytokinin-enhanced binding. Mutations in the identified sequence in the transient expression assay caused a reduced but retained cytokinin-responsiveness, as well as low reporter activity of untreated control. These results suggest that the identified sequence is a novel cis-element exhibiting cytokinin-dependent protein binding in vitro, which may function effectively when interacting with other cytokinin-related elements. The effects of this element on the chloroplast development are discussed in relation to other cytokinin-related elements.
细胞分裂素和光可激活黄瓜NADPH-原叶绿素酸酯还原酶(POR)基因的转录。我们之前报道过,该基因5'-区域的2.3 kb包含一个对细胞分裂素响应的顺式元件。在本研究中,为了鉴定与叶绿素生物合成和叶绿体发育相关的细胞分裂素响应顺式元件,我们在黄化黄瓜子叶中进行了瞬时表达分析。5'-缺失分析表明,一个411 bp的片段(-451至-40 bp)包含至少一个与细胞分裂素响应相关的顺式元件。凝胶迁移率变动分析也检测到该区域细胞分裂素增强的结合。使用一个150 bp的片段(-490至-340 bp)作为探针进行DNase I足迹分析,确定细胞分裂素增强的保护序列为5'-ATATTAGTGATAT-3'。更详细的凝胶迁移率变动和竞争分析确定5'-TATTAG-3'是细胞分裂素增强结合的关键序列。在瞬时表达分析中,鉴定序列中的突变导致细胞分裂素响应降低但仍保留,以及未处理对照的报告基因活性较低。这些结果表明,鉴定出的序列是一种新型顺式元件,在体外表现出细胞分裂素依赖性蛋白结合,当与其他细胞分裂素相关元件相互作用时可能有效发挥作用。本文讨论了该元件对叶绿体发育的影响以及其他细胞分裂素相关元件。