Gao Peng, Liao Zhi, Wang Xin-Xing, Bao Lin-Fei, Fan Mei-Hua, Li Xiao-Min, Wu Chang-Wen, Xia Shu-Wei
College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao, China; Laboratory of Marine Biological Protein Engineering, Zhejiang Ocean University, Zhoushan, Zhejiang, China.
Laboratory of Marine Biological Protein Engineering, Zhejiang Ocean University, Zhoushan, Zhejiang, China.
PLoS One. 2015 Jul 28;10(7):e0133913. doi: 10.1371/journal.pone.0133913. eCollection 2015.
Bivalve shell is a biomineralized tissue with various layers/microstructures and excellent mechanical properties. Shell matrix proteins (SMPs) pervade and envelop the mineral crystals and play essential roles in biomineralization. Despite that Mytilus is an economically important bivalve, only few proteomic studies have been performed for the shell, and current knowledge of the SMP set responsible for different shell layers of Mytilus remains largely patchy. In this study, we observed that Mytilus galloprovincialis shell contained three layers, including nacre, fibrous prism, and myostracum that is involved in shell-muscle attachment. A parallel proteomic analysis was performed for these three layers. By combining LC-MS/MS analysis with Mytilus EST database interrogations, a whole set of 113 proteins was identified, and the distribution of these proteins in different shell layers followed a mosaic pattern. For each layer, about a half of identified proteins are unique and the others are shared by two or all of three layers. This is the first description of the protein set exclusive to nacre, myostracum, and fibrous prism in Mytilus shell. Moreover, most of identified proteins in the present study are novel SMPs, which greatly extended biomineralization-related protein data of Mytilus. These results are useful, on one hand, for understanding the roles of SMPs in the deposition of different shell layers. On the other hand, the identified protein set of myostracum provides candidates for further exploring the mechanism of adductor muscle-shell attachment.
双壳贝类贝壳是一种具有多种层次/微观结构且机械性能优异的生物矿化组织。贝壳基质蛋白(SMPs)遍布并包裹着矿物晶体,在生物矿化过程中发挥着重要作用。尽管紫贻贝是一种具有重要经济价值的双壳贝类,但针对其贝壳的蛋白质组学研究却很少,目前对于紫贻贝不同贝壳层所对应的SMPs的了解仍然十分零散。在本研究中,我们观察到地中海贻贝的贝壳包含三层结构,即珍珠层、纤维棱柱层以及与贝壳 - 肌肉附着相关的壳皮层。针对这三层结构进行了平行蛋白质组学分析。通过将液相色谱 - 串联质谱(LC - MS/MS)分析与紫贻贝EST数据库查询相结合,共鉴定出113种蛋白质,这些蛋白质在不同贝壳层中的分布呈现出镶嵌模式。对于每一层,大约一半的鉴定蛋白质是独特的,其余的则为两层或三层所共有。这是首次对紫贻贝贝壳中珍珠层、壳皮层和纤维棱柱层特有的蛋白质组进行描述。此外,本研究中鉴定出的大多数蛋白质都是新的SMPs,这极大地扩展了紫贻贝生物矿化相关蛋白质的数据。这些结果一方面有助于理解SMPs在不同贝壳层沉积中的作用,另一方面,鉴定出的壳皮层蛋白质组为进一步探索闭壳肌与贝壳附着的机制提供了候选蛋白。