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钙在大豆细胞中低聚半乳糖醛酸激活的信号传导中的作用。

The role of calcium in oligogalacturonide-activated signalling in soybean cells.

作者信息

Navazio Lorella, Moscatiello Roberto, Bellincampi Daniela, Baldan Barbara, Meggio Flavio, Brini Marisa, Bowler Chris, Mariani Paola

机构信息

Dipartimento di Biologia, Via U. Bassi 58/B, 35131 Padova, Italy.

出版信息

Planta. 2002 Aug;215(4):596-605. doi: 10.1007/s00425-002-0776-7. Epub 2002 Apr 24.

Abstract

Alpha-1,4-Linked oligogalacturonides (OGs) are pectic fragments of the plant cell wall that are perceived by the plant cell as signalling molecules. Using cytosolic aequorin-expressing soybean (Glycine max L.) cells, we have analysed cytosolic Ca(2+) changes and the oxidative burst induced by OGs with different degrees of polymerization. Our results provide evidence that different OGs are sensed through transient elevations of cytosolic Ca(2+) that show different kinetics. Specificity of the Ca(2+) signature relies also on the precise structural characteristics of the OG molecules, such as the methylesterification of galacturonic acid residues and the steric conformation. Inhibition of the OG-induced Ca(2+) transient also blocks the oxidative burst, indicating that the cytosolic Ca(2+) increase is one of the earliest steps in OG-activated signalling. However, a phosphorylation event seems to precede the Ca(2+) rise, because the Ca(2+) transient could be abolished by the protein kinase inhibitor 4,5,6,7-tetrabromobenzotriazole (TBB). A pharmacological approach with different antagonists that interfere with the induction of the cytosolic Ca(2+) rise indicates that both extracellular Ca(2+) influx and intracellular Ca(2+) release participate in transducing the OG signal. Treatment of cells with OGs establishes a refractory state, which impairs the ability of the cell to respond to a second stimulus with the same elicitor for up to 16 h. This desensitization period could be prolonged with the phosphatase inhibitor okadaic acid, and eliminated with the protein kinase inhibitor Ro 31-8220, suggesting that phosphorylation events may be involved in the establishment of the cell refractory state.

摘要

α-1,4-连接的寡聚半乳糖醛酸(OGs)是植物细胞壁的果胶片段,被植物细胞视为信号分子。我们使用表达胞质水母发光蛋白的大豆(Glycine max L.)细胞,分析了不同聚合度的OGs诱导的胞质Ca²⁺变化和氧化爆发。我们的结果表明,不同的OGs通过胞质Ca²⁺的瞬时升高被感知,这些升高表现出不同的动力学。Ca²⁺信号的特异性还取决于OG分子的精确结构特征,例如半乳糖醛酸残基的甲基酯化和空间构象。OG诱导的Ca²⁺瞬变的抑制也会阻断氧化爆发,表明胞质Ca²⁺增加是OG激活信号传导的最早步骤之一。然而,磷酸化事件似乎先于Ca²⁺升高,因为蛋白激酶抑制剂4,5,6,7-四溴苯并三唑(TBB)可以消除Ca²⁺瞬变。用不同拮抗剂干扰胞质Ca²⁺升高诱导的药理学方法表明,细胞外Ca²⁺内流和细胞内Ca²⁺释放都参与了OG信号的转导。用OGs处理细胞会建立一种不应期状态,这种状态会损害细胞对同一激发子第二次刺激的反应能力,长达16小时。这种脱敏期可以用磷酸酶抑制剂冈田酸延长,并用蛋白激酶抑制剂Ro 31-8220消除,这表明磷酸化事件可能参与了细胞不应期状态的建立。

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