Kim Jiyoung, Kim Ho-Young
Kiyong Biotechnology, 418-29 Goejong-Dong, Saha-Gu, Busan 604-083, South Korea.
FEBS Lett. 2006 Oct 2;580(22):5251-6. doi: 10.1016/j.febslet.2006.08.050. Epub 2006 Sep 5.
Calcium is known to serve as a secondary messenger to mediate salt stress signaling pathway. We found a calcium-binding basic/helix-loop-helix-type transcription factor (AtNIG1) as a salt stress-responsive gene by using the suppression subtractive hybridization. The AtNIG1 was targeted into nucleus and bound to (45)Ca(2+), suggesting that AtNIG1 is a nuclear calcium-binding protein. In addition, AtNIG1 bound specifically to the E-box-DNA sequence (CANNTG), which is found in the promoter regions of many salt stress-related genes. Functional analyses with an atnig1-1 knockout mutant revealed that the mutant plants show enhanced sensitivity to salt stress. Further analyses indicated that the atnig1-1 plants have reduced survival rate, fresh weight, chlorophyll content, and protein content upon salt stress, suggesting that the AtNIG1 plays a critical role in plant salt stress signaling. Therefore, this study represents that AtNIG1 is the first known calcium-binding transcription factor involved in plant salt stress signaling.
已知钙作为第二信使介导盐胁迫信号通路。我们通过抑制性消减杂交发现一种钙结合碱性/螺旋-环-螺旋型转录因子(AtNIG1)是盐胁迫响应基因。AtNIG1定位于细胞核并与(45)Ca(2+)结合,表明AtNIG1是一种核钙结合蛋白。此外,AtNIG1特异性结合E-box-DNA序列(CANNTG),该序列存在于许多盐胁迫相关基因的启动子区域。对atnig1-1敲除突变体的功能分析表明,突变体植株对盐胁迫表现出增强的敏感性。进一步分析表明,atnig1-1植株在盐胁迫下存活率、鲜重、叶绿素含量和蛋白质含量降低,这表明AtNIG1在植物盐胁迫信号传导中起关键作用。因此,本研究表明AtNIG1是首个已知参与植物盐胁迫信号传导的钙结合转录因子。