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Characterization of the proteinaceous skeletal organic matrix from the precious coral Corallium konojoi

机译:珍贵的珊瑚珊瑚珊瑚(Corallium konojoi)中蛋白质骨架有机基质的表征

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The Japanese red and pink corals are known to be precious because of their commercial value resulting from their use in ornaments, jewelry, and medicine. Precious corals are very interesting models for biomineralization studies and possess two different skeletal structures: an axial skeleton and an endoskeleton (sclerites). Although it has long been known that the organic matrix proteins existing in coral skeletons are critical for the oriented precipitation of CaCO3 crystals, these proteins in moderate deep-sea Japanese precious corals remain uncharacterized. Therefore, in this study, we performed skeletal whole proteome analyses using 1D and 2D electrophoresis, nano-LC, and MALDI-TOF-TOF MS. We identified a total of 147 functional coral skeletal organic matrix proteins (120 from the sclerites and 36 from the axial skeleton), including two calcium-binding calmodulin. Among the organic matrix proteins identified, nine key proteins are highly typical and common in both skeletons. Strong glycosylation activity, which is essential for skeletal formation in calcifying organisms, was detected in both skeletons. This work demonstrates unique biomineralization-related proteins in precious corals and provides the first description of the major proteinaceous components of CaCO3 minerals in precious corals, enabling the comparative investigation of biocalcification in other octocorals.
机译:日本的红色和粉红色珊瑚因其在装饰品,珠宝和药品中的使用而具有商业价值,因此被认为是珍贵的。珍贵的珊瑚是用于生物矿化研究的非常有趣的模型,并具有两种不同的骨骼结构:轴向骨骼和内骨骼(硬核)。尽管早就知道珊瑚骨骼中存在的有机基质蛋白对于CaCO3晶体的定向沉淀至关重要,但这些蛋白在中等深度的日本珍贵珊瑚中仍然没有特征。因此,在这项研究中,我们使用1D和2D电泳,nano-LC和MALDI-TOF-TOF MS进行了骨骼完整蛋白质组分析。我们确定了总共147个功能性珊瑚骨骼有机基质蛋白(来自巩膜的120个和来自轴向骨架的36个),包括两个钙结合钙调蛋白。在确定的有机基质蛋白中,九种关键蛋白在两个骨架中都是非常典型且常见的。在两个骨骼中均检测到强大的糖基化活性,这对于钙化生物的骨骼形成至关重要。这项工作展示了珍贵珊瑚中独特的与生物矿化相关的蛋白质,并首次描述了珍贵珊瑚中CaCO3矿物的主要蛋白质成分,从而能够比较研究其他八角珊瑚的生物钙化。

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