Mayer Alfred M
Department of Plant and Environmental Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Phytochemistry. 2006 Nov;67(21):2318-31. doi: 10.1016/j.phytochem.2006.08.006. Epub 2006 Sep 14.
The more recent reports on polyphenol oxidase in plants and fungi are reviewed. The main aspects considered are the structure, distribution, location and properties of polyphenol oxidase (PPO) as well as newly discovered inhibitors of the enzyme. Particular stress is given to the possible function of the enzyme. The cloning and characterization of a large number of PPOs is surveyed. Although the active site of the enzyme is conserved, the amino acid sequence shows very considerable variability among species. Most plants and fungi PPO have multiple forms of PPO. Expression of the genes coding for the enzyme is tissue specific and also developmentally controlled. Many inhibitors of PPO have been described, which belong to very diverse chemical structures; however, their usefulness for controlling PPO activity remains in doubt. The function of PPO still remains enigmatic. In plants the positive correlation between levels of PPO and the resistance to pathogens and herbivores is frequently observed, but convincing proof of a causal relationship, in most cases, still has not been published. Evidence for the induction of PPO in plants, particularly under conditions of stress and pathogen attack is considered, including the role of jasmonate in the induction process. A clear role of PPO in a least two biosynthetic processes has been clearly demonstrated. In both cases a very high degree of substrate specificity has been found. In fungi, the function of PPO is probably different from that in plants, but there is some evidence indicating that here too PPO has a role in defense against pathogens. PPO also may be a pathogenic factor during the attack of fungi on other organisms. Although many details about structure and probably function of PPO have been revealed in the period reviewed, some of the basic questions raised over the years remain to be answered.
本文综述了有关植物和真菌中多酚氧化酶的最新报道。所考虑的主要方面包括多酚氧化酶(PPO)的结构、分布、定位和性质,以及新发现的该酶抑制剂。特别强调了该酶可能的功能。调查了大量PPO的克隆和特性。尽管该酶的活性位点是保守的,但氨基酸序列在不同物种间显示出很大的变异性。大多数植物和真菌的PPO有多种形式。编码该酶的基因表达具有组织特异性,并且也受发育调控。已经描述了许多PPO抑制剂,它们属于非常多样的化学结构;然而,它们对控制PPO活性的有效性仍存疑问。PPO的功能仍然成谜。在植物中,经常观察到PPO水平与对病原体和食草动物的抗性之间存在正相关,但在大多数情况下,因果关系的令人信服的证据仍未发表。考虑了植物中PPO诱导的证据,特别是在胁迫和病原体攻击条件下,包括茉莉酸在诱导过程中的作用。已经清楚地证明了PPO在至少两个生物合成过程中具有明确的作用。在这两种情况下,都发现了非常高的底物特异性。在真菌中,PPO的功能可能与植物中的不同,但有一些证据表明在这里PPO也在抵御病原体中起作用。PPO在真菌攻击其他生物体的过程中也可能是一个致病因素。尽管在所审查的时期内已经揭示了有关PPO结构和可能功能的许多细节,但多年来提出的一些基本问题仍有待回答。