Lin Ku-Feng, Liu Yu-Nan, Hsu Shang-Te D, Samuel Dharmaraj, Cheng Chao-Sheng, Bonvin Alexandre M J J, Lyu Ping-Chiang
Department of Life Sciences, National Tsing Hua University, Hsinchu, Taiwan.
Biochemistry. 2005 Apr 19;44(15):5703-12. doi: 10.1021/bi047608v.
Plant nonspecific lipid transfer proteins (nsLTPs) are thermal stable proteins that are capable of transferring lipid molecules between bilayers in vitro. This family of proteins, abundant in plants, is proposed to be involved in defense, pollination, and germination; the in vivo biological function remains, however, elusive. Here we report the purification and sequencing of an nsLTP1 from mung bean sprouts. We have also determined the solution structure of this nsLTP1, which represents the first 3D structure of the dicotyledonous nsLTP1 family. The global fold of mung bean nsLTP1 is similar to those of the monocotyledonous nsLTP1 structures and consists of four alpha-helices stabilized by four disulfide bonds. There are, however, some notable differences in the C-terminal tails and internal hydrophobic cavities. Circular dichroism and fluorescence spectroscopy were used to compare the thermodynamics and lipid transfer properties of mung bean nsLTP1 with those of rice nsLTP1. Docking of a lipid molecule into the solution structure of mung bean nsLTP1 reveals similar binding cavities and hydrophobic interactions as in rice nsLTP1, consistent with their comparable lipid transfer properties measured experimentally.
植物非特异性脂质转移蛋白(nsLTPs)是一类热稳定蛋白,能够在体外双层膜之间转移脂质分子。这类在植物中大量存在的蛋白被认为参与了防御、授粉和萌发过程;然而,其体内生物学功能仍不清楚。在此,我们报道了从绿豆芽中纯化和测序得到的一种nsLTP1。我们还确定了这种nsLTP1的溶液结构,它代表了双子叶植物nsLTP1家族的首个三维结构。绿豆nsLTP1的整体折叠结构与单子叶植物nsLTP1的结构相似,由四个通过四个二硫键稳定的α螺旋组成。然而,在C末端尾巴和内部疏水腔方面存在一些显著差异。利用圆二色光谱和荧光光谱比较了绿豆nsLTP1和水稻nsLTP1的热力学和脂质转移特性。将一个脂质分子对接至绿豆nsLTP1的溶液结构中,发现其具有与水稻nsLTP1相似的结合腔和疏水相互作用,这与通过实验测得的它们相当的脂质转移特性一致。