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半胱天冬酶与植物对病原体过敏反应中的程序性细胞死亡

Caspases and programmed cell death in the hypersensitive response of plants to pathogens.

作者信息

del Pozo O, Lam E

机构信息

Biotech Center, Department of Plant Science, Foran Hall 59 Dudley Road, Rutgers State University of New Jersey, New Brunswick, New Jersey 08903, USA.

出版信息

Curr Biol. 1998 Oct 8;8(20):1129-32. doi: 10.1016/s0960-9822(98)70469-5.

Abstract

The hypersensitive response (HR) is induced by certain plant pathogens and involves programmed cell death (PCD) to restrict the spread of pathogens from the infection site [1]. Concurrent with the induction of cell death, the host activates a defense response [2]. The cell death associated with the HR in several plant-pathogen systems has morphological similarities to animal apoptosis [3,4], which suggests that cell death mechanisms in plants and animals may share common components that lead to similar cellular events. Caspases are conserved cysteine proteases that regulate animal PCD [5]; caspase activity or an involvement of caspases in cell death has yet to be reported in plants. In this work, we investigated the participation of caspases in HR cell death. Caspase-specific peptide inhibitors, Ac-YVAD-CMK [6] and Ac-DEVD-CHO [7], could abolish bacteria-induced plant PCD but did not significantly affect the induction of other aspects of HR, such as the expression of defense genes. This result confirmed our previous model that cell death can be uncoupled from defense gene activation during HR [8]. Caspase-like proteolytic activity was detected in tobacco tissues that were developing HR following infection with tobacco mosaic virus (TMV). Our results provide evidence for the presence of caspase-like plant protease(s) that participate in HR cell death.

摘要

超敏反应(HR)由某些植物病原体诱导,涉及程序性细胞死亡(PCD),以限制病原体从感染部位扩散[1]。与细胞死亡诱导同时发生的是,宿主激活防御反应[2]。在几种植物 - 病原体系统中,与HR相关的细胞死亡在形态上与动物细胞凋亡相似[3,4],这表明植物和动物中的细胞死亡机制可能共享导致相似细胞事件的共同成分。半胱天冬酶是调节动物PCD的保守半胱氨酸蛋白酶[5];在植物中尚未报道半胱天冬酶活性或其参与细胞死亡的情况。在这项工作中,我们研究了半胱天冬酶在HR细胞死亡中的参与情况。半胱天冬酶特异性肽抑制剂Ac - YVAD - CMK[6]和Ac - DEVD - CHO[7]可以消除细菌诱导的植物PCD,但对HR其他方面的诱导没有显著影响,如防御基因的表达。这一结果证实了我们之前的模型,即在HR期间细胞死亡可以与防御基因激活解偶联[8]。在用烟草花叶病毒(TMV)感染后正在发生HR的烟草组织中检测到了类半胱天冬酶的蛋白水解活性。我们的结果为参与HR细胞死亡的类半胱天冬酶植物蛋白酶的存在提供了证据。

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