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Oocyst wall formation and composition in coccidian parasites

机译:球虫寄生虫卵囊壁的形成和组成

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The oocyst wall of coccidian parasites is a robust structure that is resistant to a variety of environmental and chemical insults. This resilience allows oocysts to survive for long periods, facilitating transmission from host to host. The wall is bilayered and is formed by the sequential release of the contents of two specialized organelles - wall forming body 1 and wall forming body 2 - found in the macrogametocyte stage of Coccidia. The oocyst wall is over 90% protein but few of these proteins have been studied. One group is cysteine-rich and may be presumed to crosslink via disulphide bridges, though this is yet to be investigated. Another group of wall proteins is rich in tyrosine. These proteins, which range in size from 8-31 kDa, are derived from larger precursors of 56 and 82 kDa found in the wall forming bodies. Proteases may catalyze processing of the precursors into tyrosine-rich peptides, which are then oxidatively crosslinked in a reaction catalyzed by peroxidases. In support of this hypothesis, the oocyst wall has high levels of dityrosine bonds. These dityrosine crosslinked proteins may provide a structural matrix for assembly of the oocyst wall and contribute to its resilience.
机译:球虫寄生虫的卵囊壁是坚固的结构,可抵抗各种环境和化学侵害。这种弹性使卵囊能够长期生存,从而促进宿主之间的传播。壁是双层的,并且是通过依次释放在球菌的巨配子体阶段中发现的两个专门的细胞器(壁形成体1和壁形成体2)的内容物而形成的。卵囊壁的蛋白质含量超过90%,但是很少研究这些蛋白质。一组富含半胱氨酸,可以推测是通过二硫键交联的,尽管尚待研究。另一组壁蛋白富含酪氨酸。这些蛋白质的大小范围为8-31 kDa,它们来自壁形成体中存在的56和82 kDa的较大前体。蛋白酶可催化将前体加工成富含酪氨酸的肽,然后在过氧化物酶催化的反应中将其氧化交联。支持该假设的是,卵囊壁具有高水平的二酪氨酸键。这些二酪氨酸交联蛋白可以提供卵囊壁组装的结构基质,并有助于其弹性。

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