Instituto de Ingeniería Genética y Biología Molecular, INGEBI-Consejo Nacional de Investigaciones Científicas y Técnicas, 1428 Buenos Aires, Argentina.
J Biol Chem. 2011 Feb 11;286(6):4882-91. doi: 10.1074/jbc.M110.147512. Epub 2010 Dec 3.
The tip-growing pollen tube is a useful model for studying polarized cell growth in plants. We previously characterized LePRK2, a pollen-specific receptor-like kinase from tomato (1). Here, we showed that LePRK2 is present as multiple phosphorylated isoforms in mature pollen membranes. Using comparative sequence analysis and phosphorylation site prediction programs, we identified two putative phosphorylation motifs in the cytoplasmic juxtamembrane (JM) domain. Site-directed mutagenesis in these motifs, followed by transient overexpression in tobacco pollen, showed that both motifs have opposite effects in regulating pollen tube length. Relative to LePRK2-eGFP pollen tubes, alanine substitutions in residues of motif I, Ser(277)/Ser(279)/Ser(282), resulted in longer pollen tubes, but alanine substitutions in motif II, Ser(304)/Ser(307)/Thr(308), resulted in shorter tubes. In contrast, phosphomimicking aspartic substitutions at these residues gave reciprocal results, that is, shorter tubes with mutations in motif I and longer tubes with mutations in motif II. We conclude that the length of pollen tubes can be negatively and positively regulated by phosphorylation of residues in motif I and II respectively. We also showed that LePRK2-eGFP significantly decreased pollen tube length and increased pollen tube tip width, relative to eGFP tubes. The kinase activity of LePRK2 was relevant for this phenotype because tubes that expressed a mutation in a lysine essential for kinase activity showed the same length and width as the eGFP control. Taken together, these results suggest that LePRK2 may have a central role in pollen tube growth through regulation of its own phosphorylation status.
顶端生长的花粉管是研究植物中极化细胞生长的有用模型。我们之前从番茄中鉴定了一个花粉特异性受体样激酶 LePRK2(1)。在这里,我们表明 LePRK2 以多个磷酸化同工型存在于成熟花粉的膜中。使用比较序列分析和磷酸化位点预测程序,我们在细胞质近膜(JM)结构域中鉴定了两个假定的磷酸化基序。在这些基序中进行定点突变,然后在烟草花粉中转瞬表达,表明这两个基序在调节花粉管长度方面具有相反的作用。与 LePRK2-eGFP 花粉管相比, motif I 中残基 Ser(277)/Ser(279)/Ser(282)的丙氨酸取代导致花粉管变长,但 motif II 中 Ser(304)/Ser(307)/Thr(308)的丙氨酸取代导致花粉管变短。相反,这些残基的磷酸模拟天冬氨酸取代给出了相反的结果,即 motif I 中的突变导致管变短,而 motif II 中的突变导致管变长。我们得出结论,磷酸化 motif I 和 motif II 中的残基可以分别负向和正向调节花粉管的长度。我们还表明,与 eGFP 管相比,LePRK2-eGFP 显著缩短花粉管长度并增加花粉管尖端宽度。LePRK2 的激酶活性与这种表型相关,因为表达对激酶活性必需的赖氨酸突变的管与 eGFP 对照具有相同的长度和宽度。总之,这些结果表明,LePRK2 可能通过调节其自身的磷酸化状态在花粉管生长中发挥核心作用。