Braun M
Botanisches Institut, Universität Bonn, Venusbergweg 22, D-53115 Bonn, Germany.
Plant Physiol. 2001 Apr;125(4):1611-9. doi: 10.1104/pp.125.4.1611.
Spectrin-like epitopes were immunochemically detected and immunofluorescently localized in gravitropically tip-growing rhizoids and protonemata of characean algae. Antiserum against spectrin from chicken erythrocytes showed cross-reactivity with rhizoid proteins at molecular masses of about 170 and 195 kD. Confocal microscopy revealed a distinct spherical labeling of spectrin-like proteins in the apices of both cell types tightly associated with an apical actin array and a specific subdomain of endoplasmic reticulum (ER), the ER aggregate. The presence of spectrin-like epitopes, the ER aggregate, and the actin cytoskeleton are strictly correlated with active tip growth. Application of cytochalasin D and A23187 has shown that interfering with actin or with the calcium gradient, which cause the disintegration of the ER aggregate and abolish tip growth, inhibits labeling of spectrin-like proteins. At the beginning of the graviresponse in rhizoids the labeling of spectrin-like proteins remained in its symmetrical position at the cell tip, but was clearly displaced to the upper flank in gravistimulated protonemata. These findings support the hypothesis that a displacement of the Spitzenkörper is required for the negative gravitropic response in protonemata, but not for the positive gravitropic response in rhizoids. It is evident that the actin/spectrin system plays a role in maintaining the organization of the ER aggregate and represents an essential part in the mechanism of gravitropic tip growth.
在轮藻的向重力性顶端生长的假根和原丝体中,通过免疫化学方法检测到了血影蛋白样表位,并通过免疫荧光法对其进行了定位。抗鸡红细胞血影蛋白的抗血清与分子量约为170和195kD的假根蛋白表现出交叉反应。共聚焦显微镜显示,在这两种细胞类型的顶端,血影蛋白样蛋白呈现出明显的球形标记,与顶端肌动蛋白阵列以及内质网(ER)的一个特定亚结构域——ER聚集体紧密相关。血影蛋白样表位、ER聚集体和肌动蛋白细胞骨架的存在与活跃的顶端生长密切相关。细胞松弛素D和A23187的应用表明,干扰肌动蛋白或钙梯度会导致ER聚集体解体并消除顶端生长,同时抑制血影蛋白样蛋白的标记。在假根重力反应开始时,血影蛋白样蛋白的标记在细胞顶端保持其对称位置,但在受重力刺激的原丝体中明显移至上部侧翼。这些发现支持了这样一种假说,即原丝体的负向重力反应需要Spitzenkörper的移位,但假根的正向重力反应则不需要。显然,肌动蛋白/血影蛋白系统在维持ER聚集体的组织中发挥作用,并且是向重力性顶端生长机制的重要组成部分。