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来自……的一种具有PDZ结构域的新型贝壳基质蛋白的分子特征分析

Molecular Characterization of a Novel Shell Matrix Protein With PDZ Domain From .

作者信息

Sun Qi, Jiang Yuting, Yan Xiaojun, Fan Meihua, Zhang Xiaolin, Xu Huanzhi, Liao Zhi

机构信息

Laboratory of Marine Biology Protein Engineering, Marine Science and Technical College, Zhejiang Ocean University, Zhoushan, China.

出版信息

Front Physiol. 2020 Oct 2;11:543758. doi: 10.3389/fphys.2020.543758. eCollection 2020.

Abstract

Mollusk shells are products of biomineralization and possess excellent mechanical properties, and shell matrix proteins (SMPs) have important functions in shell formation. A novel SMP with a PDZ domain (PDZ-domain-containing-protein-1, PDCP-1) was identified from the shell matrices of In this study, the gene expression, function, and location of PDCP-1 were analyzed. PDCP-1 was characterized as an ∼70 kDa protein with a PDZ (postsynaptic density/discs large/zonula occludes) domain and a ZM (ZASP-like motif) domain. The PDCP-1 gene has a high expression level and specific location in the foot, mantle and adductor muscle. Recombinantly expressed PDCP-1 (rPDCP-1) altered the morphology of calcite crystals, the polymorph of calcite crystals, binding with both calcite and aragonite crystals, and inhibition of the crystallization rate of calcite crystals. In addition, anti-rPDCP-1 antibody was prepared, and immunohistochemistry and immunofluorescence analyses revealed the specific location of PDCP-1 in the mantle, the adductor muscle, and the aragonite (nacre and myostracum) layer of the shell, suggesting multiple functions of PDCP-1 in biomineralization, muscle-shell attachment, and muscle attraction. Furthermore, pull-down analysis revealed 19 protein partners of PDCP-1 from the shell matrices, which accordingly provided a possible interaction network of PDCP-1 in the shell. These results expand the understanding of the functions of PDZ-domain-containing proteins (PDCPs) in biomineralization and the supramolecular chemistry that contributes to shell formation.

摘要

软体动物贝壳是生物矿化的产物,具有优异的力学性能,而贝壳基质蛋白(SMPs)在贝壳形成过程中具有重要作用。在本研究中,从[具体软体动物名称未给出]的贝壳基质中鉴定出一种具有PDZ结构域的新型SMP(含PDZ结构域蛋白-1,PDCP-1)。分析了PDCP-1的基因表达、功能和定位。PDCP-1被鉴定为一种约70 kDa的蛋白质,具有一个PDZ(突触后致密区/盘状大蛋白/紧密连接)结构域和一个ZM(类ZASP基序)结构域。PDCP-1基因在足部、外套膜和闭壳肌中具有高表达水平和特定定位。重组表达的PDCP-1(rPDCP-1)改变了方解石晶体的形态、方解石晶体的多晶型,与方解石和文石晶体均有结合,并抑制了方解石晶体的结晶速率。此外,制备了抗rPDCP-1抗体,免疫组织化学和免疫荧光分析揭示了PDCP-1在贝壳外套膜、闭壳肌和文石(珍珠层和肌壳层)层中的特定定位,表明PDCP-1在生物矿化、肌肉-贝壳附着和肌肉吸引中具有多种功能。此外,下拉分析从贝壳基质中鉴定出19种PDCP-1的蛋白质相互作用伙伴,从而提供了PDCP-1在贝壳中可能的相互作用网络。这些结果扩展了对含PDZ结构域蛋白(PDCPs)在生物矿化以及有助于贝壳形成的超分子化学中功能的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f298/7573561/4ffd64beb53c/fphys-11-543758-g001.jpg

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