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从巨太平洋石鳖(Mollusca)的矿化齿舌中进行蛋白质组学分析。

Proteomic analysis from the mineralized radular teeth of the giant Pacific chiton, Cryptochiton stelleri (Mollusca).

机构信息

Department of Chemical and Environmental Engineering, University of California, Riverside, CA 92521, USA.

出版信息

Proteomics. 2012 Sep;12(18):2890-4. doi: 10.1002/pmic.201100473. Epub 2012 Aug 22.

Abstract

The biomineralized radular teeth of chitons are known to consist of iron-based magnetic crystals, associated with the maximum hardness and stiffness of any biomineral. Based on our transmission electron microscopy analysis of partially mineralized teeth, we suggest that the organic matrix within the teeth controls the iron oxide nucleation. Thus, we used Nano-LC-MS to perform a proteomic analysis of the organic matrix in radular teeth of the chiton Cryptochiton stelleri in order to identify the proteins involved in the biomineralization process. Since the genome sequence of C. stelleri is not available, cross-species similarity searching and de novo peptide sequencing were used to screen the proteins. Our results indicate that several proteins were dominant in the mineralized part of the radular teeth, amongst which, myoglobin and a highly acidic peptide were identified as possibly involved in the biomineralization process.

摘要

已知石鳖的生物矿化齿舌由基于铁的磁性晶体组成,这与任何生物矿化材料的最大硬度和刚度有关。基于我们对部分矿化牙齿的透射电子显微镜分析,我们认为牙齿中的有机基质控制着氧化铁的成核。因此,我们使用纳升液相色谱-质谱联用技术对石鳖 Cryptochiton stelleri 的齿舌中的有机基质进行了蛋白质组分析,以鉴定参与生物矿化过程的蛋白质。由于 C. stelleri 的基因组序列不可用,因此使用了跨物种相似性搜索和从头肽测序来筛选蛋白质。我们的结果表明,有几种蛋白质在齿舌的矿化部分中占优势,其中肌红蛋白和一种高度酸性的肽被鉴定为可能参与生物矿化过程。

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