Lv Bing, Chen Feng, Gong Zhong-Hua, Liang Jian-Sheng
Key Laboratory of Crop Genetics and Physiology of Jiangsu Province, College of Bioscience and Biotechnology, Yangzhou University, Yangzhou 225009, China.
Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 2007 Apr;33(2):115-22.
Plant cell wall-plasma membrane-cytoskeleton (CW-PM-CSK) continuum plays important roles in the regulation of plant responses to environmental cues. It has been found in our previous study that an integrin-like protein identified in Arabidopsis and Zea mays plasma membrane mediates the interactions between cell wall and plasma membrane and cell responses to osmotic stress. In the present study, the co-localization of integrin-like protein and alpha-tubulin and their possible interactions were investigated in the root cells of maize using an indirect immunofluorescence technique combined with pharmacological approach. As compared with the control, after treatment with GRGDS, a synthetic peptide contained the RGD domain which binds specifically to integrin-like protein, the integrin-like protein was distributed more evenly over the plasma membrane and the density of alpha-tubulin array became lower. However, treatment with SDGRG, a GRGDS analog which does not contain the RGD domain, had no influences on them. Microtubule-depolymering or -stabilizing reagents exerted their effects either on the distribution over the plasma membrane or on the expression of integrin-like protein. The above results showed that the distribution of integrin-like protein on plasma membrane was closely linked to the alignment of microtubule arrays. Integrin-like protein mediates the interaction between cell wall and plasma membrane, and this interaction in return affected the alignment of microtubule arrays. Changes in cytoskeleton dynamics had significant effect on the distribution of integrin-like protein on the plasma membrane. These results strongly suggest that there are interactions between integrin-like protein and cytoskeleton in plant cells which are very complicated. It is worthy of extensive study to work out the mechanisms of plant responses to intracellular and extracellular signals.
植物细胞壁-质膜-细胞骨架(CW-PM-CSK)连续体在调节植物对环境信号的响应中起着重要作用。我们先前的研究发现,在拟南芥和玉米质膜中鉴定出的一种类整合素蛋白介导细胞壁与质膜之间的相互作用以及细胞对渗透胁迫的响应。在本研究中,使用间接免疫荧光技术结合药理学方法,研究了玉米根细胞中类整合素蛋白与α-微管蛋白的共定位及其可能的相互作用。与对照相比,用GRGDS(一种含有与类整合素蛋白特异性结合的RGD结构域的合成肽)处理后,类整合素蛋白在质膜上分布更均匀,α-微管蛋白阵列的密度降低。然而,用不含有RGD结构域的GRGDS类似物SDGRG处理对它们没有影响。微管解聚或稳定试剂对质膜上的分布或类整合素蛋白的表达都有影响。上述结果表明,类整合素蛋白在质膜上的分布与微管阵列的排列密切相关。类整合素蛋白介导细胞壁与质膜之间的相互作用,而这种相互作用反过来又影响微管阵列的排列。细胞骨架动力学的变化对类整合素蛋白在质膜上的分布有显著影响。这些结果强烈表明,植物细胞中类整合素蛋白与细胞骨架之间存在非常复杂的相互作用。深入研究植物对细胞内和细胞外信号响应的机制值得广泛开展。