对 Asterias rubens 肽的结构分析表明存在二硫导向的 β 发夹折叠。

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Rozita Takjoo, David T Wilson, Justine Le Quilliec, Casey A Schmidt, Guangzu Zhao, Michael J Liddell, Naeem Y Shaikh, Kartik Sunagar, Alex Loukas, Michael J Smout, Norelle L Daly
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引用次数: 0

摘要

海星是一种种类繁多的海洋无脊椎动物,在各个生命阶段都表现出非常强大的再生能力。在对普通海星Asterias rubens的腔液(生物流体)进行的蛋白质组研究中发现了许多蛋白质和肽,它们似乎与生物体内的伤口愈合反应有关。然而,包括肽 KASH2 在内的几种损伤反应肽的三维结构和功能尚待研究。在这里,我们发现 KASH2 肽采用了二硫导向的 β 发夹折叠(DDH)。在进化过程中,DDH图案似乎与抑制剂胱氨酸结图案有关,而抑制剂胱氨酸结图案是最常见的富含二硫化物的肽折叠之一。DDH 模式最初被认为仅限于蛛形纲动物,但我们的研究表明,由于趋同进化的结果,它也可能起源于海星。虽然广泛保守的 DDH 折叠具有潜在的跨海星伤口愈合能力,但我们已经证明 KASH2 不会增强人成纤维细胞的增殖,而这是一种用于伤口愈合再上皮化筛选的简单方法。因此,有必要开展更多研究,以确定 KASH2 在海星中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural analysis of an Asterias rubens peptide indicates the presence of a disulfide-directed β-hairpin fold.

Sea stars are an abundant group of marine invertebrates that display remarkably robust regenerative capabilities throughout all life stages. Numerous proteins and peptides have been identified in a proteome study on the coelomic fluid (biofluid) of the common sea star Asterias rubens, which appear to be involved with the wound-healing response in the organism. However, the three-dimensional structure and function of several of these injury-responsive peptides, including the peptide KASH2, are yet to be investigated. Here, we show that the KASH2 peptide adopts a disulfide-directed β-hairpin fold (DDH). The DDH motif appears to be evolutionarily related to the inhibitor cystine knot motif, which is one of the most widespread disulfide-rich peptide folds. The DDH motif was originally thought to be restricted to arachnids, but our study suggests that as a result of convergent evolution it could also have originated in sea stars. Although the widely conserved DDH fold has potential cross-phyla wound-healing capacity, we have shown that KASH2 does not enhance the proliferation of human fibroblasts, a simple method for wound-healing re-epithelialisation screening. Therefore, additional research is necessary to determine the role of KASH2 in the sea stars.

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来源期刊
FEBS Open Bio
FEBS Open Bio BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
5.10
自引率
0.00%
发文量
173
审稿时长
10 weeks
期刊介绍: FEBS Open Bio is an online-only open access journal for the rapid publication of research articles in molecular and cellular life sciences in both health and disease. The journal''s peer review process focuses on the technical soundness of papers, leaving the assessment of their impact and importance to the scientific community. FEBS Open Bio is owned by the Federation of European Biochemical Societies (FEBS), a not-for-profit organization, and is published on behalf of FEBS by FEBS Press and Wiley. Any income from the journal will be used to support scientists through fellowships, courses, travel grants, prizes and other FEBS initiatives.
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