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无尾两栖类的皮肤溶细胞肽与先天免疫系统

Dermal cytolytic peptides and the system of innate immunity in anurans.

作者信息

Conlon J Michael, Iwamuro Shawichi, King Jay D

机构信息

Weill Cornell Medical College in Qatar, Qatar Foundation-Education City, Doha, Qatar.

出版信息

Ann N Y Acad Sci. 2009 Apr;1163:75-82. doi: 10.1111/j.1749-6632.2008.03618.x.

Abstract

Cationic peptides with the propensity to adopt an amphipathic alpha-helical conformation in a membrane-mimetic environment are synthesized in the skin of many species of frogs. These peptides frequently display potent cytolytic activities against a range of pathogenic bacteria and fungi, consistent with the hypothesis that they play a role in host defense. However, the importance of the peptides in the survival strategy of the animal is not clearly understood. At this time, antimicrobial peptides have been identified in the skin of frogs from species belonging to the Bombinatoridae, Hylidae, Hyperoliidae, Leiopelmatidae, Leptodactylidae, Myobatrachidae, Pipidae, and Ranidae families, but several well-studied species from the Bufonidae, Ceratophryidae, Dicroglossidae, Microhylidae, Pelobatidae, Pyxicephalidae, Rhacophoridae, and Scaphiopodidae families do not appear to synthesize these peptides. Although cytolytic activity against the chytrid fungus Batrachochytrium dendrobatidis, responsible for anuran population declines worldwide, has been demonstrated in vitro, the ability of frog skin antimicrobial peptides to protect the animal in the wild appears to be limited. While the production of dermal cytolytic peptides may offer definite evolutionary advantage to anurans, their precise biological function, for example during metamorphosis, may need to be re-evaluated.

摘要

在许多种类青蛙的皮肤中会合成在模拟膜环境中倾向于形成两亲性α-螺旋构象的阳离子肽。这些肽通常对一系列致病细菌和真菌表现出强大的细胞溶解活性,这与它们在宿主防御中发挥作用的假设一致。然而,这些肽在动物生存策略中的重要性尚未得到明确理解。目前,在蟾蜍科、角蛙科、叉舌蛙科、姬蛙科、锄足蟾科、大头蛙科、树蛙科和锄足蟾科等科的青蛙皮肤中已鉴定出抗菌肽,但蟾蜍科、角花蟾科、盘舌蟾科、姬蛙科、锄足蟾科、大头蛙科、树蛙科和锄足蟾科等几个经过充分研究的物种似乎并不合成这些肽。尽管在体外已证明对导致全球无尾目种群数量下降的壶菌蛙壶菌具有细胞溶解活性,但青蛙皮肤抗菌肽在野外保护动物的能力似乎有限。虽然皮肤细胞溶解肽的产生可能为无尾目动物提供一定的进化优势,但它们的确切生物学功能,例如在变态过程中的功能,可能需要重新评估。

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