Mahajan Shilpi, Sopory Sudhir K, Tuteja Narendra
Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, New Delhi, India.
FEBS J. 2006 Mar;273(5):907-25. doi: 10.1111/j.1742-4658.2006.05111.x.
The studies on calcium sensor calcineurin B-like protein (CBL) and CBL interacting protein kinases (CIPK) are limited to Arabidopsis and rice and their functional role is only beginning to emerge. Here, we present cloning and characterization of a protein kinase (PsCIPK) from a legume, pea, with novel properties. The PsCIPK gene is intronless and encodes a protein that showed partial homology to the members of CIPK family. The recombinant PsCIPK protein was autophosphorylated at Thr residue(s). Immunoprecipitation and yeast two-hybrid analysis showed direct interaction of PsCIPK with PsCBL, whose cDNA and genomic DNA were also cloned in this study. PsCBL showed homology to AtCBL3 and contained calcium-binding activity. We demonstrate for the first time that PsCBL is phosphorylated at its Thr residue(s) by PsCIPK. Immunofluorescence/confocal microscopy showed that PsCBL is exclusively localized in the cytosol, whereas PsCIPK is localized in the cytosol and the outer membrane. The exposure of plants to NaCl, cold and wounding co-ordinately upregulated the expression of PsCBL and PsCIPK genes. The transcript levels of both genes were also coordinately stimulated in response to calcium and salicylic acid. However, drought and abscisic acid had no effect on the expression of these genes. These studies show the ubiquitous presence of CBL/CIPK in higher plants and enhance our understanding of their role in abiotic and biotic stress signalling.
对钙传感器类钙调神经磷酸酶B蛋白(CBL)和CBL相互作用蛋白激酶(CIPK)的研究仅限于拟南芥和水稻,其功能作用才刚刚开始显现。在此,我们报道了一种来自豆科植物豌豆的具有新特性的蛋白激酶(PsCIPK)的克隆与特性分析。PsCIPK基因无内含子,编码一种与CIPK家族成员具有部分同源性的蛋白质。重组PsCIPK蛋白在苏氨酸残基处发生自磷酸化。免疫沉淀和酵母双杂交分析表明PsCIPK与PsCBL直接相互作用,本研究中也克隆了PsCBL的cDNA和基因组DNA。PsCBL与AtCBL3具有同源性,并具有钙结合活性。我们首次证明PsCIPK使PsCBL的苏氨酸残基发生磷酸化。免疫荧光/共聚焦显微镜显示PsCBL仅定位于细胞质中,而PsCIPK定位于细胞质和外膜中。将植物暴露于NaCl、低温和创伤条件下会协同上调PsCBL和PsCIPK基因的表达。这两个基因的转录水平在响应钙和水杨酸时也受到协同刺激。然而,干旱和脱落酸对这些基因的表达没有影响。这些研究表明CBL/CIPK在高等植物中普遍存在,并增进了我们对它们在非生物和生物胁迫信号传导中作用的理解。