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Identification and Functional Analysis of a Novel Tryptophyllin Peptide from the Skin of the Red-eye Leaf Frog, Agalychnis callidryas

机译:一种来自红眼蛙(Agalychnis callidryas)皮肤的新型色氨酸蛋白肽的鉴定和功能分析

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摘要

Amphibian skin has proved repeatedly to be a largely untapped source of bioactive peptides and this is especially true of members of the Phyllomedusinae subfamily of frogs native to South and Central America. Tryptophyllins are a group of peptides mainly found in the skin of members of this genus. In this study, a novel tryptophyllin (TPH) type 3 peptide, named AcT-3, has been isolated and structurally-characterised from the skin secretion and lyophilised skin extract of the red-eye leaf frog, Agalychnis callidryas. The peptide was identified in and purified from the skin secretion by reverse-phase HPLC. MALDI-TOF mass spectrometry and MS/MS fragmentation sequencing established its primary structure as: pGlu-Gly-Lys-Pro-Tyr-Trp-Pro-Pro-Pro-Phe-Leu-Pro-Glu, with a non-protonated molecular mass of 1538.19Da. The mature peptide possessed the canonical N-terminal pGlu residue that arises from post-translational modification of a Gln residue. The deduced open-reading frame consisted of 63 amino acid residues encoding a highly-conserved signal peptide of approximately 22 amino acid residues, an intervening acidic spacer peptide domain, a single AcT-3 encoding domain and a C terminal processing site. A synthetic replicate of AcT-3 was found to antagonise the effect of BK on rat tail artery smooth muscle and to contract the intestinal smooth muscle preparations. It was also found that AcT-3 could dose-dependently inhibit the proliferation of human prostate cancer cell lines after 72h incubation.
机译:两栖动物的皮肤已被反复证明是生物活性肽的主要未开发来源,对南美洲和中美洲原住民的青蛙的Phyllomedusinae亚科成员尤其如此。色氨酸是一组主要在该属成员的皮肤中发现的肽。在这项研究中,从红眼蛙Agalychnis callidryas的皮肤分泌物和冻干的皮肤提取物中分离并命名了一种名为AcT-3的新型色氨酸(TPH)3型肽。通过反相HPLC在皮肤分泌物中鉴定并纯化出该肽。 MALDI-TOF质谱和MS / MS片段测序确定了其主要结构为:pGlu-Gly-Lys-Pro-Tyr-Trp-Pro-Pro-Pro-Phe-Leu-Pro-Glu,具有非质子化分子质量1538.19Da。成熟的肽具有源自Gln残基的翻译后修饰的规范性N末端pGlu残基。推导的开放阅读框由63个氨基酸残基组成,其编码约22个氨基酸残基的高度保守的信号肽,中间的酸性间隔肽结构域,单个AcT-3编码结构域和C末端加工位点。发现AcT-3的合成复制品可拮抗BK对大鼠尾动脉平滑肌的作用,并收缩肠道平滑肌制剂。还发现AcT-3可以在72小时的孵育后剂量依赖性地抑制人前列腺癌细胞系的增殖。

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