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从藏高原蛙,棘胸蛙皮肤中发现的具有多种功能的新型抗菌肽家族。

Novel families of antimicrobial peptides with multiple functions from skin of Xizang plateau frog, Nanorana parkeri.

机构信息

Department of Neurosurgery, the Second Hospital of Hebei Medical University, Shijiazhuang 050000, China.

出版信息

Biochimie. 2010 May;92(5):475-81. doi: 10.1016/j.biochi.2010.01.025. Epub 2010 Feb 12.

Abstract

Xizang plateau frog (Nanorana parkeri) captured in Lhasa, Tibet, China, solely lives in the subtropical plateau, where there is strong ultraviolet radiation and long duration of sunshine. Considering its harsh living environment, the frog's innate defense against microbes and environmental stress was investigated. In current study, three antimicrobial peptides (AMPs) were purified and characterized from the skin secretion of N. parkeri. The coding cDNA sequences were also cloned from the skin cDNA library of N. parkeri. By structural characterization, two peptides were identified belonging to Japonicin-1 family, and named as Japonicin-1Npa (FLLFPLMCKIQGKC) and Japonicin-1Npb (FVLPLVMCKILRKC). The third peptide isolated named Parkerin with a unique sequence of GWANTLKNVAGGLCKITGAA did not show similarity to any known amphibian AMPs. Multi-functions of three AMPs were examined (antioxidant, MCD, hemolytic etc). Their solution structures determined by CD and antimicrobial mechanisms investigated by SEM are very well consistent with their functional characters. Current result suggests that these novel multi-functional AMPs could play an important role in defending N. parkeri against environmental oxidative stress and pathogenic microorganisms, which may partially reveal the ecological adaptation of these plateau-living amphibians.

摘要

中国西藏拉萨捕获的藏高原蛙(Nanorana parkeri)仅生活在亚热带高原地区,那里紫外线辐射强烈,日照时间长。考虑到其恶劣的生活环境,研究了青蛙对微生物和环境应激的先天防御能力。在本研究中,从 N. parkeri 的皮肤分泌物中纯化并表征了三种抗菌肽(AMP)。还从 N. parkeri 的皮肤 cDNA 文库中克隆了编码 cDNA 序列。通过结构表征,鉴定出两种肽属于 Japonicin-1 家族,并分别命名为 Japonicin-1Npa(FLLFPLMCKIQGKC)和 Japonicin-1Npb(FVLPLVMCKILRKC)。分离出的第三种肽命名为 Parkerin,其独特的序列为 GWANTLKNVAGGLCKITGAA,与任何已知的两栖动物 AMP 都没有相似性。研究了三种 AMP 的多种功能(抗氧化、MCD、溶血等)。通过 CD 确定它们的溶液结构,并通过 SEM 研究它们的抗菌机制,与它们的功能特征非常吻合。目前的结果表明,这些新型多功能 AMP 可能在防御 N. parkeri 对抗环境氧化应激和致病微生物方面发挥重要作用,这可能部分揭示了这些高原生活的两栖动物的生态适应性。

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