Huang Shuli, Jin Lifeng, Du Jizhou, Li Hua, Zhao Qian, Ou Guangshuo, Ao Guangming, Yuan Ming
State Key Laboratory of Plant Physiology and Biochemistry, Department of Plant Sciences, College of Biological Sciences, China Agricultural University, Beijing 100094, China.
Plant J. 2007 Aug;51(3):406-18. doi: 10.1111/j.1365-313X.2007.03153.x. Epub 2007 Jun 8.
We characterize a novel, pollen-specific, microtubule-associated protein, SB401, found in Solanum berthaultii. This protein binds to and bundles taxol-stabilized microtubules and enhances tubulin polymerization in a concentration-dependent manner, particularly at lower temperatures. Electron microscopy revealed that the protein decorates the entire length of microtubules. Cross-linking and electrophoresis studies showed that SB401 protein forms dimers, and suggest that dimerization could account for bundling. Double immunofluorescent staining of pollen tubes of S. berthaultii showed that SB401 protein co-localized with cortical microtubule bundles. SB401 protein also binds to and bundles actin filaments, and could connect actin filaments to microtubules. SB401 protein had a much higher affinity for microtubules than for actin filaments. In the presence of both cytoskeletal elements, the protein preferentially bound microtubules to form bundles. These results demonstrate that SB401 protein may have important roles in organizing the cytoskeleton in pollen tubes.
我们鉴定了一种在伯氏马铃薯(Solanum berthaultii)中发现的新型花粉特异性微管相关蛋白SB401。该蛋白能结合并捆绑紫杉醇稳定的微管,并以浓度依赖的方式增强微管蛋白聚合,尤其是在较低温度下。电子显微镜显示该蛋白沿微管全长分布。交联和电泳研究表明SB401蛋白形成二聚体,并提示二聚化可能是造成微管成束的原因。对伯氏马铃薯花粉管进行的双重免疫荧光染色显示,SB401蛋白与皮层微管束共定位。SB401蛋白还能结合并捆绑肌动蛋白丝,并可将肌动蛋白丝连接到微管上。SB401蛋白对微管的亲和力比对肌动蛋白丝的亲和力高得多。在两种细胞骨架成分都存在的情况下,该蛋白优先结合微管以形成微管束。这些结果表明,SB401蛋白可能在花粉管细胞骨架的组织中发挥重要作用。