Leclercq Julie, Ranty Benoît, Sanchez-Ballesta Maria-Teresa, Li Zhengguo, Jones Brian, Jauneau Alain, Pech Jean-Claude, Latché Alain, Ranjeva Raoul, Bouzayen Mondher
UMR 990 INRA/INP-ENSAT, Av. de l'Agrobiopole, BP 107, F-31326 Castanet Tolosan cedex, France.
J Exp Bot. 2005 Jan;56(409):25-35. doi: 10.1093/jxb/eri003. Epub 2004 Oct 22.
A cDNA clone (LeCRK1), encoding a novel isoform of calcium-dependent protein kinase (CDPK), was isolated by screening a tomato (Lycopersicon esculentum) cDNA library. The protein derived from the full-length sequence indicated that it belongs to the family of CDPK-related kinases (CRKs) and the predicted amino acid sequence shows a modular organization of the protein consisting of different characteristic domains. The kinase domain of LeCRK1 shares a high degree of similarity with the catalytic domain of CDPKs. In contrast to canonical members of the family, LeCRK1 has a degenerate sequence in the C-terminal calmodulin-like domain. LeCRK1 protein was shown to be a functional kinase, but, consistent with the lack of calcium-binding activity, its autophosphorylation activity did not require calcium. LeCRK1 harbours an amphiphilic amino acid region revealed to be a functional calmodulin-binding site by in vitro assay. A putative myristoylation/palmitoylation sequence has been identified at the N-terminus. Expressing an LeCRK1::GFP fusion protein in the protoplast resulted in its targeting to the plasma membrane. Site-directed mutagenesis of critical amino acids of the myristoylation/palmitoylation consensus sites led to the accumulation of the mutated protein in the cytoplasm, suggesting that the native protein is anchored to the plasma membrane by acylated residues. Expression studies revealed significant accumulation of LeCRK1 transcripts during fruit ripening, although transcripts were also detected in stem, leaf, and flower. LeCRK1 mRNA level in leaves was slightly induced by ethylene and salicylic acid, and upon mechanical wounding and cold treatment. It is noteworthy that LeCRK1 mRNAs were undetectable in different tomato-ripening natural mutants such as NR, Rin, and Nor, suggesting a role in the ripening process.
通过筛选番茄(Lycopersicon esculentum)cDNA文库,分离出一个编码钙依赖蛋白激酶(CDPK)新亚型的cDNA克隆(LeCRK1)。从全长序列推导的蛋白质表明它属于CDPK相关激酶(CRK)家族,预测的氨基酸序列显示该蛋白质具有由不同特征结构域组成的模块化组织。LeCRK1的激酶结构域与CDPKs的催化结构域具有高度相似性。与该家族的典型成员不同,LeCRK1在C末端类钙调蛋白结构域具有简并序列。LeCRK1蛋白被证明是一种功能性激酶,但与缺乏钙结合活性一致,其自身磷酸化活性不需要钙。LeCRK1含有一个两亲性氨基酸区域,体外实验表明该区域是一个功能性钙调蛋白结合位点。在N末端已鉴定出一个假定的肉豆蔻酰化/棕榈酰化序列。在原生质体中表达LeCRK1::GFP融合蛋白导致其靶向质膜。对肉豆蔻酰化/棕榈酰化共有位点的关键氨基酸进行定点诱变导致突变蛋白在细胞质中积累,这表明天然蛋白通过酰化残基锚定在质膜上。表达研究表明,尽管在茎、叶和花中也检测到转录本,但在果实成熟过程中LeCRK1转录本大量积累。叶片中的LeCRK1 mRNA水平受到乙烯和水杨酸的轻微诱导,以及机械损伤和冷处理的诱导。值得注意的是,在不同的番茄成熟天然突变体如NR、Rin和Nor中未检测到LeCRK1 mRNA,这表明其在成熟过程中起作用。