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机械刺激对商陆茎节中膜联蛋白样蛋白定位的影响。

Effects of a mechanical stimulation of localization of annexin-like proteins in Bryonia dioica internodes.

作者信息

Thonat C, Mathieu C, Crevecoeur M, Penel C, Gaspar T, Boyer N

机构信息

Laboratoire de Physiologie et Génétique Végétales, Institut National de la Recherche Agronomique-Université Blaise Pascal, Aubière France.

出版信息

Plant Physiol. 1997 Jul;114(3):981-8. doi: 10.1104/pp.114.3.981.

Abstract

Mechanical stimulation exerted by rubbing a young internode of Bryonia dioica plants inhibits its growth. Previous cellular and biochemical studies showed that this growth inhibition is associated with Ca(2+) redistribution and profound modifications of plasma membrane characteristics. We extracted and purified Ca(2+)-dependent phospholipid-binding proteins from B. dioica internodes. Two main proteins, p33 and p35, and other minor bands were isolated and identified as annexin-like proteins because of their biochemical properties and their cross-reactions with antibodies against maize (Zea mays L.) annexins. Rabbit antiserum was obtained by injection of B. dioica p35. This antiserum was used for the immunocytolocalization of annexin-like proteins in internode parenchyma cells. It appeared that the distribution of annexin-like proteins was different before and 30 min after the mechanical stimulation. Western analysis of proteins in membrane fractions after separation by free-flow electrophoresis showed that p35 was present in most fractions, whereas p33 appeared mainly in plasmalemma-enriched fractions after the mechanical stimulation. It is hypothesized that a subcellular redistribution of these proteins might be involved in growth inhibition by mechanical stress.

摘要

摩擦白泻根植物的幼嫩节间所施加的机械刺激会抑制其生长。先前的细胞和生化研究表明,这种生长抑制与Ca(2+)重新分布以及质膜特性的深刻改变有关。我们从白泻根节间提取并纯化了Ca(2+)依赖性磷脂结合蛋白。分离出两种主要蛋白p33和p35以及其他一些次要条带,并因其生化特性以及与抗玉米(玉米)膜联蛋白抗体的交叉反应而被鉴定为膜联蛋白样蛋白。通过注射白泻根p35获得兔抗血清。该抗血清用于节间薄壁细胞中膜联蛋白样蛋白的免疫细胞定位。结果显示,膜联蛋白样蛋白在机械刺激前和刺激后30分钟的分布有所不同。对自由流动电泳分离后的膜组分中的蛋白质进行Western分析表明,p35存在于大多数组分中,而p33在机械刺激后主要出现在富含质膜的组分中。据推测,这些蛋白质的亚细胞重新分布可能参与了机械应力对生长的抑制作用。

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