Department of Biochemistry & Biophysics, Oregon State University, Corvallis, Oregon 97331, USA.
Antioxid Redox Signal. 2012 Aug 15;17(4):608-33. doi: 10.1089/ars.2011.4404. Epub 2012 Jan 25.
Parasite survival and virulence relies on effective defenses against reactive oxygen and nitrogen species produced by the host immune system. Peroxiredoxins (Prxs) are ubiquitous enzymes now thought to be central to such defenses and, as such, have potential value as drug targets and vaccine antigens.
Plasmodial and kinetoplastid Prx systems are the most extensively studied, yet remain inadequately understood. For many other parasites our knowledge is even less well developed. Through parasite genome sequencing efforts, however, the key players are being discovered and characterized. Here we describe what is known about the biochemistry, regulation, and cell biology of Prxs in parasitic protozoa, helminths, and fungi. At least one Prx is found in each parasite with a sequenced genome, and a notable theme is the common patterns of expression, localization, and functionality among sequence-similar Prxs in related species.
The nomenclature of Prxs from parasites is in a state of disarray, causing confusion and making comparative inferences difficult. Here we introduce a systematic Prx naming convention that is consistent between organisms and informative about structural and evolutionary relationships.
The new nomenclature should stimulate the crossfertilization of ideas among parasitologists and with the broader redox research community. The diverse parasite developmental stages and host environments present complex systems in which to explore the variety of roles played by Prxs, with a view toward parlaying what is learned into novel therapies and vaccines that are urgently needed.
寄生虫的生存和毒力依赖于对宿主免疫系统产生的活性氧和氮物种的有效防御。过氧化物酶(Prx)是普遍存在的酶,现在被认为是这种防御的核心,因此具有作为药物靶点和疫苗抗原的潜在价值。
疟原虫和动基体 Prx 系统是研究最广泛的,但仍了解不足。对于许多其他寄生虫,我们的了解甚至更少。然而,通过寄生虫基因组测序工作,关键参与者正在被发现和描述。在这里,我们描述了寄生虫原生动物、蠕虫和真菌中 Prx 的生物化学、调节和细胞生物学方面的知识。在每个有测序基因组的寄生虫中都发现了至少一种 Prx,并且一个显著的主题是在相关物种中序列相似的 Prx 之间表达、定位和功能的常见模式。
寄生虫 Prx 的命名法处于混乱状态,导致混淆,难以进行比较推断。在这里,我们引入了一种系统的 Prx 命名约定,该约定在生物体之间是一致的,并且提供了有关结构和进化关系的信息。
新的命名法应该促进寄生虫学家之间以及与更广泛的氧化还原研究界之间的思想交叉。寄生虫的不同发育阶段和宿主环境呈现出复杂的系统,在这些系统中可以探索 Prx 所扮演的各种角色,以期将所学知识转化为急需的新型疗法和疫苗。