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参与线虫角质层生物合成的酶。

Enzymes involved in the biogenesis of the nematode cuticle.

作者信息

Page Antony P, Winter Alan D

机构信息

Wellcome Centre for Molecular Parasitology, The Anderson College, The University of Glasgow, Glasgow G11 6NU, UK.

出版信息

Adv Parasitol. 2003;53:85-148. doi: 10.1016/s0065-308x(03)53003-2.

Abstract

Nematodes include species that are significant parasites of man, his domestic animals and crops, and cause chronic debilitating diseases in the developing world; such as lymphatic filariasis and river blindness caused by filarial species. Around one third of the World's population harbour parasitic nematodes; no vaccines exist for prevention of infection, limited effective drugs are available and drug resistance is an ever-increasing problem. A critical structure of the nematode is the protective cuticle, a collagen-rich extracellular matrix (ECM) that forms the exoskeleton, and is critical for viability. This resilient structure is synthesized sequentially five times during nematode development and offers protection from the environment, including the hosts' immune response. The detailed characterization of this complex structure; it's components, and the means by which they are synthesized, modified, processed and assembled will identify targets that may be exploited in the future control of parasitic nematodes. This review will focus on the nematode cuticle. This structure is predominantly composed of collagens, a class of proteins that are modified by a range of co- and post-translational modifications prior to assembly into higher order complexes or ECMs. The collagens and their associated enzymes have been comprehensively characterized in vertebrate systems and some of these studies will be addressed in this review. Conversely, the biosynthesis of this class of essential structural proteins has not been studied in such detail in the nematodes. As with all morphogenetic, functional and developmental studies in the Nematoda phylum, the free-living species Caenorhabditis elegans has proven to be invaluable in the characterization of the cuticle and the cuticle collagen gene family, and is now proving to be an excellent model in the study of cuticle collagen biosynthetic enzymes. This model system will be the main focus of this review.

摘要

线虫包括对人类、家畜和农作物具有重要影响的寄生虫物种,并在发展中世界导致慢性衰弱性疾病;例如丝虫物种引起的淋巴丝虫病和河盲症。世界约三分之一的人口携带寄生线虫;目前尚无预防感染的疫苗,有效的药物有限,而且耐药性问题日益严重。线虫的一个关键结构是保护性角质层,它是一种富含胶原蛋白的细胞外基质(ECM),形成外骨骼,对生存至关重要。这种有弹性的结构在 nematode 发育过程中依次合成五次,可保护线虫免受包括宿主免疫反应在内的外界环境影响。对这种复杂结构及其组成成分,以及它们的合成、修饰、加工和组装方式进行详细表征,将有助于确定未来控制寄生线虫时可利用的靶点。本综述将聚焦于线虫角质层。这种结构主要由胶原蛋白组成,胶原蛋白是一类蛋白质,在组装成更高阶复合物或细胞外基质之前会经过一系列共翻译和翻译后修饰。胶原蛋白及其相关酶在脊椎动物系统中已得到全面表征,本综述将涉及其中一些研究。相反,这类重要结构蛋白的生物合成在线虫中尚未得到如此详细的研究。与线虫门的所有形态发生、功能和发育研究一样,自由生活的秀丽隐杆线虫已被证明在角质层和角质层胶原蛋白基因家族的表征中具有重要价值,并且现在已被证明是研究角质层胶原蛋白生物合成酶的优秀模型。这个模型系统将是本综述的主要重点。

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