Li Cuifeng, Xie Wanqin, Bai Wenyan, Li Zhenpeng, Zhao Yulong, Liu Hua
Department of Biochemistry and Molecular Biology, Nankai University, Tianjin, China.
FEBS J. 2008 Nov;275(21):5298-308. doi: 10.1111/j.1742-4658.2008.06660.x. Epub 2008 Sep 17.
Although plant non-specific lipid transfer proteins (ns-LTPs) are characterized by their ability to bind and transfer a broad range of hydrophobic ligands in vitro, their biological functions in vivo remain unclear. Recently, it has been proposed that ns-LTPs may play a key role in plant defense mechanisms, particularly during the induction of systemic acquired resistance, however, very little is known about the regulation in this process. We report that the binding of maize non-specific lipid transfer protein (Zm-LTP) to calmodulin (CaM) is in a calcium-independent manner. To better understand the interaction mechanism between Zm-LTP and CaM, the CaM-binding site of Zm-LTP was mapped to the region of amino acids 46-60. Point mutations indicate that four amino acid residues, R46, R47, K54 and R58, in this region are crucial for binding. Furthermore, we tested the effects of CaM on the lipid-binding activity of Zm-LTP in the presence of Ca(2+), EGTA, N-(6-aminohexyl)-5-chloro-1-naphthalene sulfonamide and trifluoperazine respectively. We also investigated the structural features of CaM-binding motifs in LTPs from different species and strong differences were observed. Taken together, our results suggest that the interaction with CaM could be a common feature of plant LTPs. The identification and characterization of CaM-binding domain of LTPs should provide new insights into the mechanism by which the physiological functions of LTPs are regulated.
尽管植物非特异性脂质转移蛋白(ns-LTPs)在体外具有结合和转移多种疏水配体的能力,但其在体内的生物学功能仍不清楚。最近,有人提出ns-LTPs可能在植物防御机制中起关键作用,特别是在系统获得性抗性的诱导过程中,然而,对此过程中的调控知之甚少。我们报道玉米非特异性脂质转移蛋白(Zm-LTP)与钙调蛋白(CaM)的结合是不依赖钙的。为了更好地理解Zm-LTP与CaM之间的相互作用机制,将Zm-LTP的CaM结合位点定位到氨基酸46 - 60区域。点突变表明该区域的四个氨基酸残基R46、R47、K54和R58对结合至关重要。此外,我们分别测试了在存在Ca(2+)、乙二醇双四乙酸(EGTA)、N-(6-氨基己基)-5-氯-1-萘磺酰胺和三氟拉嗪的情况下CaM对Zm-LTP脂质结合活性的影响。我们还研究了不同物种LTPs中CaM结合基序的结构特征,观察到了显著差异。综上所述,我们的结果表明与CaM的相互作用可能是植物LTPs的一个共同特征。LTPs的CaM结合结构域的鉴定和表征应为调控LTPs生理功能的机制提供新的见解。