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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >IMMUNOLOCALIZATION OF MYOSIN IN RHIZOIDS OF CHARA GLOBULARIS THUILL
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IMMUNOLOCALIZATION OF MYOSIN IN RHIZOIDS OF CHARA GLOBULARIS THUILL

机译:球A豆根茎中肌球蛋白的免疫球蛋白

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Myosin-related proteins have been localized immunocytochemically in gravity-sensing rhizoids of the green alga Chara globularis using a monoclonal antibody against the heavy chain of myosin from mouse 3T3 cells and a polyclonal antibody to bovine skeletal and smooth muscle myosin. In the basal zone of the rhizoids which contain a large vacuole, streaming endoplasm and stationary cortical cytoplasm, the monoclonal antibody stained myosin-related proteins as diffusely fluorescing endoplasmic strands. This pattern is similar to the arrangement of subcortical actin filament bundles. In the apical zone which contains an aggregation of ER membranes and secretory vesicles for tip growth, diffuse immunofluorescence was detected; the intensity of the signal increasing towards the apical cell wall. The most prominent myosin-staining was associated with the surface of statoliths in the apical zone. The polyclonal antibody produced a punctate staining pattern in the basal zone, caused by myosin-related proteins associated with the surface of organelles in the streaming endoplasm and the periphery of the nucleus. In the apical zone, this antibody revealed myosin-immunofluorescence on the surface of statoliths in methacrylate-embedded rhizoids. Neither antibody revealed myosin-immunofluorescence on the surface of organelles and vesicles in the relatively stationary cytoplasm of the subapical zone. These results indicate (i) that different classes of myosin are involved in the various transport processes in Chara rhizoids; (ii) that cytoplasmic streaming in rhizoids is driven by actomyosin, corresponding to the findings on Chara internodal cells; (iii) that actin dependent control of statolith position and active movement is mediated by myosin-related proteins associated with the statolith surfaces; and (iv) that myosin-related proteins an involved in the process of tip growth. [References: 42]
机译:肌球蛋白相关蛋白已使用抗小鼠3T3细胞肌球蛋白重链的单克隆抗体和针对牛骨骼肌和平滑肌肌球蛋白的多克隆抗体,通过免疫细胞化学法定位在绿藻Chara globularis的重力感应根状茎上。在含有大液泡,流态内质和固定皮层细胞质的根状茎基部区域,单克隆抗体将肌球蛋白相关蛋白染色为弥散发荧光的内质链。这种模式类似于皮层下肌动蛋白丝束的排列。在包含ER膜和分泌性囊泡以促进尖端生长的顶端区域,检测到弥漫性免疫荧光。信号强度朝着顶端细胞壁增加。最突出的肌球蛋白染色与根尖区的石笋表面有关。该多克隆抗体在基底区产生了点状的染色模式,这是由于肌球蛋白相关蛋白与流动的内质和细胞核周围的细胞器表面有关。在顶端区域,该抗体在包埋有甲基丙烯酸酯的类根瘤中的石笋表面上显示出肌球蛋白免疫荧光。两种抗体均未在根尖下区域相对固定的细胞质中的细胞器和囊泡表面显示肌球蛋白免疫荧光。这些结果表明:(i)在Chara根状茎的各种转运过程中涉及到不同类别的肌球蛋白; (ii)根瘤菌的胞质流由放线菌素驱动,这对应于Chara节间细胞的发现; (iii)肌动蛋白对吻合石位置和主动运动的控制是由与吻合石表面相关的肌球蛋白相关蛋白介导的; (iv)肌球蛋白相关蛋白参与尖端生长过程。 [参考:42]

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