Chae Keun, Zhang Kangling, Zhang Li, Morikis Dimitrios, Kim Sun Tae, Mollet Jean-Claude, de la Rosa Noelle, Tan Kimberly, Lord Elizabeth M
Center for Plant Cell Biology, University of California, Riverside, California, 92521; Department of Botany and Plant Sciences, University of California, Riverside, California, 92521.
Mass Spectrometry Facility, University of California, Riverside, California, 92521.
J Biol Chem. 2007 Nov 16;282(46):33845-33858. doi: 10.1074/jbc.M703997200. Epub 2007 Sep 18.
Lily pollen tubes grow adhering to an extracellular matrix produced by the transmitting tract epidermis in a hollow style. SCA, a small ( approximately 9.4 kDa), basic protein plus low esterified pectin from this extracellular matrix are involved in the pollen tube adhesion event. The mode of action for this adhesion event is unknown. We partially separated three SCA isoforms from the lily stigma in serial size exclusion column fractions (SCA1, 9370 Da; SCA2, 9384 Da; SCA3, 9484 Da). Peptide sequencing analysis allowed us to determine two amino acid variations in SCA3, compared with SCA1. For SCA2, however, there are more sequence variations yet to be identified. Our structural homology and molecular dynamics modeling results show that SCA isoforms have the plant nonspecific lipid transfer protein-like structure: a globular shape of the orthogonal 4-helix bundle architecture, four disulfide bonds, an internal hydrophobic and solvent-inaccessible cavity, and a long C-terminal tail. The Ala(71) in SCA3, replacing the Gly(71) in SCA1, has no predictable effect on structure. The Arg(26) in SCA3, replacing the Gly(26) in SCA1, is predicted to cause structural changes that result in a significantly reduced volume for the internal hydrophobic cavity in SCA3. The volume of the internal cavity fluctuates slightly during the molecular dynamics simulation, but overall, SCA1 displays a larger cavity than SCA3. SCA1 displays higher activity than SCA3 in the in vitro pollen tube adhesion assay. No differences were found between the two SCAs in a binding assay with pectin. The larger size of the hydrophobic cavity in SCA1 correlates with its higher adhesion activity.
百合花粉管以中空的方式沿着由传粉道表皮产生的细胞外基质生长。来自这种细胞外基质的SCA是一种小的(约9.4 kDa)碱性蛋白加上低酯化果胶,参与花粉管的粘附事件。这种粘附事件的作用模式尚不清楚。我们在连续尺寸排阻柱分级分离中从百合柱头部分分离出三种SCA同工型(SCA1,9370 Da;SCA2,9384 Da;SCA3,9484 Da)。肽测序分析使我们能够确定与SCA1相比,SCA3中有两个氨基酸变异。然而,对于SCA2,还有更多的序列变异有待确定。我们的结构同源性和分子动力学建模结果表明,SCA同工型具有植物非特异性脂质转移蛋白样结构:正交4螺旋束结构的球状形状、四个二硫键、一个内部疏水且溶剂无法进入的腔以及一个长的C末端尾巴。SCA3中的Ala(71)取代了SCA1中的Gly(71),对结构没有可预测的影响。SCA3中的Arg(26)取代了SCA1中的Gly(26)预计会导致结构变化,从而使SCA3中内部疏水腔的体积显著减小。在分子动力学模拟过程中,内部腔的体积略有波动,但总体而言,SCA1显示出比SCA3更大的腔。在体外花粉管粘附试验中,SCA1显示出比SCA3更高的活性。在与果胶的结合试验中,两种SCA之间未发现差异。SCA1中较大尺寸的疏水腔与其较高的粘附活性相关。