Rivera-Pérez Crisalejandra, Arroyo-Loranca Raquel G, Hernández-Saavedra Norma Yolanda
CONACyT-Centro de Investigaciones Biológicas del Noroeste (CIBNOR), La Paz, Baja California Sur, Mexico.
Fisheries Ecology, Centro de Investigaciones Biológicas del Noroeste (CIBNOR), La Paz, Baja California Sur, Mexico.
Comp Biochem Physiol A Mol Integr Physiol. 2022 Oct;272:111276. doi: 10.1016/j.cbpa.2022.111276. Epub 2022 Jul 16.
Biomineralization leads to the hardening of mineralized materials, such as the shell of Mollusk, to fulfill a wide range of functions, such as (but not limited to) skeletal support, protection of the soft tissues, navigation, etc. The study of the proteins responsible for this process, shell matrix proteins (SMPs), allows addressing questions related to structure-function relationship and to the mechanism of mineral formation, which is limited in gastropod species. In this study, a low molecular weight protein was isolated from the insoluble fraction after decalcification with acetic acid of the shell of Haliotis fulgens and, named Hf15. The unglycosylated protein has a theoretical molecular weight of 15 kDa, it possesses calcium and chiting binding properties. Hf15 can precipitate calcium carbonate in vitro in presence of different salts. Analysis by LC-MS of the five peptide sequences of Hf15 generated by trypsinization revealed that two peptides displayed homology to an uncharacterized protein 3-like from Haliotis rufescens, Haliotis asinia and H. sorenseni. The results obtained indicated that Hf15 is a novel SMP involved in shell mineralization in Haliotis fulgens.
生物矿化导致矿化材料变硬,如软体动物的外壳,以实现广泛的功能,如(但不限于)骨骼支撑、保护软组织、导航等。对负责这一过程的蛋白质,即贝壳基质蛋白(SMPs)的研究,有助于解决与结构 - 功能关系以及矿物形成机制相关的问题,而这在腹足纲物种中是有限的。在本研究中,在用乙酸对红鲍贝壳进行脱钙后,从不可溶部分分离出一种低分子量蛋白质,并将其命名为Hf15。该非糖基化蛋白质的理论分子量为15 kDa,具有钙和几丁质结合特性。Hf15在不同盐存在的情况下可在体外沉淀碳酸钙。通过液相色谱 - 质谱联用(LC - MS)对经胰蛋白酶消化产生的Hf15的五个肽序列进行分析,结果显示有两个肽与来自红鲍、皱纹盘鲍和索氏鲍的一种未表征的类蛋白3具有同源性。所得结果表明,Hf15是一种参与红鲍贝壳矿化的新型SMP。