柱状茎柱(Stylophora pistillata)骨骼蛋白制备的LC-MS/MS测序优化获得了更多的珊瑚骨骼蛋白。

BMC materials Pub Date : 2020-07-16 eCollection Date: 2020-01-01 DOI:10.1186/s42833-020-00014-x
Yanai Peled, Jeana L Drake, Assaf Malik, Ricardo Almuly, Maya Lalzar, David Morgenstern, Tali Mass
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引用次数: 14

摘要

石珊瑚在包括蛋白质在内的多种大分子介导的高度受控的生物矿化过程中产生碳酸钙外骨骼。充分识别和分类这些蛋白质对于了解它们在外骨骼形成中的作用至关重要,但尚未建立纯化和表征提取的全套珊瑚骨骼蛋白的最佳方法,因此它们的完整组成仍然不清楚。在这里,我们测试了四种骨骼蛋白纯化方案,使用丙酮沉淀和超滤透析过滤器来呈现一个全面的硬核珊瑚骨骼蛋白质组。我们在珊瑚骨骼中鉴定了总共60种蛋白质,其中44种不存在于先前发表的石珊瑚骨骼蛋白质组中。在本研究中进行的提取蛋白纯化方案表明,没有一种方法可以捕获所有蛋白质,每种方案都揭示了一组独特的方法专有的蛋白质。为了更好地了解骨骼蛋白运输的一般机制,我们进一步研究了蛋白质的基因本体、跨膜结构域和信号肽。我们发现跨膜结构域蛋白和信号肽分泌途径本身不能解释蛋白质向骨骼的运输。因此,我们提出一些蛋白质是通过非传统的分泌途径转运到骨骼的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Optimization of skeletal protein preparation for LC-MS/MS sequencing yields additional coral skeletal proteins in Stylophora pistillata.

Stony corals generate their calcium carbonate exoskeleton in a highly controlled biomineralization process mediated by a variety of macromolecules including proteins. Fully identifying and classifying these proteins is crucial to understanding their role in exoskeleton formation, yet no optimal method to purify and characterize the full suite of extracted coral skeletal proteins has been established and hence their complete composition remains obscure. Here, we tested four skeletal protein purification protocols using acetone precipitation and ultrafiltration dialysis filters to present a comprehensive scleractinian coral skeletal proteome. We identified a total of 60 proteins in the coral skeleton, 44 of which were not present in previously published stony coral skeletal proteomes. Extracted protein purification protocols carried out in this study revealed that no one method captures all proteins and each protocol revealed a unique set of method-exclusive proteins. To better understand the general mechanism of skeletal protein transportation, we further examined the proteins' gene ontology, transmembrane domains, and signal peptides. We found that transmembrane domain proteins and signal peptide secretion pathways, by themselves, could not explain the transportation of proteins to the skeleton. We therefore propose that some proteins are transported to the skeleton via non-traditional secretion pathways.

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