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Activation of the tobacco SIP kinase by both a cell wall-derived carbohydrate elicitor and purified proteinaceous elicitins from Phytophthora spp.

机译:来源于细胞壁的碳水化合物引发剂和来自疫霉属植物的纯化的蛋白质引发素对烟草SIP激酶的激活。

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摘要

Two purified proteinaceous fungal elicitors, parasiticein (an alpha elicitin) and cryptogein (a beta elicitin), as well as a fungal cell wall-derived carbohydrate elicitor all rapidly activated a 48-kD kinase in tobacco suspension cells. The maximum activation of this kinase paralleled or preceded medium alkalization and activation of the defense gene phenylalanine ammonia-lyase (PAL). In addition, the two elicitins, which also induced hypersensitive cell death, activated a 44- and a 40-kD kinase with delayed kinetics. By contrast, the cell wall-derived elicitor only weakly activated the 44-kD kinase and failed to activate the 40-kD kinase. The size and substrate preference of the 48-kD kinase are reminiscent of the recently purified and cloned salicylic acid-induced protein (SIP) kinase, which is a member of the mitogen-activated protein kinase family. Antibodies raised against a peptide corresponding to the unique N terminus of SIP kinase immunoreacted with the 48-kD kinase activated by all three elicitors from Phytophthora spp. In addition, the cell wall elicitor and the salicylic acid-activated 48-kD kinase copurified through several chromatography steps and comigrated on two-dimensional gels. Based on these results, all three fungal elicitors appear to activate the SIP kinase. In addition, inhibition of SIP kinase activation by kinase inhibitors correlated with the suppression of cell wall elicitor-induced medium alkalization and PAL gene activation, suggesting a regulatory function for the SIP kinase in these defense responses.
机译:两种纯化的蛋白质真菌激发子,寄生虫素(α激发子)和隐菌素(β激发子),以及真菌细胞壁衍生的碳水化合物激发子均迅速激活了烟草悬浮细胞中的48 kD激酶。该激酶的最大激活与中等碱化作用平行或在其之前发生,而防御基因苯丙氨酸氨裂合酶(PAL)则处于激活状态。另外,这两种诱导素也诱导了超敏性细胞死亡,以延迟的动力学激活了一个44 kD和一个40 kD的激酶。相比之下,源自细胞壁的激发子仅弱激活44 kD激酶,而不能激活40 kD激酶。 48-kD激酶的大小和底物偏好使人联想到最近纯化和克隆的水杨酸诱导蛋白(SIP)激酶,它是促有丝分裂原激活的蛋白激酶家族的成员。针对与SIP激酶独特的N末端相对应的肽产生的抗体,该肽与被疫霉属(Phytophthora spp)的所有三个激发子激活的48-kD激酶免疫反应。此外,细胞壁引发剂和水杨酸活化的48-kD激酶通过几个色谱步骤共纯化,并在二维凝胶上迁移。基于这些结果,所有三种真菌引发剂似乎都激活了SIP激酶。此外,激酶抑制剂对SIP激酶激活的抑制与细胞壁诱导物诱导的介质碱化和PAL基因激活的抑制有关,提示在这些防御反应中SIP激酶具有调节功能。

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