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Actomyosin is Involved in the Organization of the Microtubule Preprophase Band in Arabidopsis Suspension Cultured Cells 被引量:1
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作者 Chun-Li Li Zhi-Ling Chen Ming Yuan 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2006年第1期53-61,共9页
The microtubule preprophase bands (PPBs) participate in the sequence of events to position cell plates in most plants. However, the mechanism of PPB formation remains to be clarified. In the present study, the organ... The microtubule preprophase bands (PPBs) participate in the sequence of events to position cell plates in most plants. However, the mechanism of PPB formation remains to be clarified. In the present study, the organization of PPBs in Arabidopsis suspension cultured cells was investigated by confocal laser scanning microscopy combined with pharmacological treatments of reagents specific for the cytoskeleton elements. Double staining of F-actin and microtubules (MTs) showed that actin filaments were arranged randomly and no colocalization with cortical MTs was observed in the interphase cells. However, cortical actin filaments showed colocalization with MTs during the formation of PPBs. A broad actin band formed with the broad MT band in the initiation of PPB and narrowed down together with the MT band to form the PPB. Nevertheless, broad MT bands were formed but failed to narrow down in cells treated with the F-actin disruptor latrunculin A. In contrast, in the presence of the F-actin stabilizer phalloidin, PPB formation did not exhibit any abnormality. Therefore, the integrity, but not the dynamics, of the actin cytoskeleton is necessary for the formation of normal PPBs. Treatment with 2, 3-butanedine monoxime, a myosin inhibitor, also resulted in the formation of broad MT bands, indicating that actomyosin may be involved in the rearrangement of MTs to form the PPBs. Double staining of MTs and myosin revealed that myosin concentrated on the PPB region during PPB formation. It is suggested that the actin cytoskeleton at the PPB site may serve as a rack to transport cortical MTs by using myosin when the broad MT band narrows down to form the PPB. 展开更多
关键词 arabidopsis suspension cultured cell 2 3-butanedine monoxime MICROFILAMENT microtubule preprophase band myosin.
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拟南芥悬浮培养细胞外钙结合蛋白的初步检测
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作者 崔彦伟 陈伟 崔素娟 《河北师范大学学报(自然科学版)》 CAS 北大核心 2007年第2期241-243,共3页
钙离子通过与其结合的蛋白质在植物细胞信号转导中起着重要的作用,已知植物细胞外空间钙离子浓度高达毫摩尔级,而与钙结合的胞外蛋白有待进一步的分析研究.采用丙酮沉淀法分别制备了拟南芥悬浮培养细胞壁盐提蛋白及培养介质蛋白,制备的... 钙离子通过与其结合的蛋白质在植物细胞信号转导中起着重要的作用,已知植物细胞外空间钙离子浓度高达毫摩尔级,而与钙结合的胞外蛋白有待进一步的分析研究.采用丙酮沉淀法分别制备了拟南芥悬浮培养细胞壁盐提蛋白及培养介质蛋白,制备的蛋白经SDS PAGE电泳分离后,电转移至硝酸纤维素膜,45Ca2+覆盖结合,放射自显影,结果表明悬浮细胞外可能存在多条可与钙离子结合的蛋白条带,其分子量约为17,30,40,68 ku,推测这些蛋白可能参与胞外钙离子相关的生物学过程. 展开更多
关键词 拟南芥 悬浮培养细胞 细胞外蛋白 45Ca^2+覆盖
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