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对胶原蛋白亚基在绿青鳕和无须鳕海洋胶原蛋白不同分子排列中所起作用的理解不断深入。

Deepening in the understanding of the role of collagen subunits on the differential molecular arrangement of P. glauca and M. merluccius marine collagens.

作者信息

Blanco María, Sanz Noelia, Pérez-Martín Ricardo I, Sotelo Carmen G

机构信息

Grupo de Bioquímica de alimentos, Instituto de Investigaciones Marinas, Consejo Superior de Investigaciones Científicas, Eduardo Cabello, 6, 36208, Vigo, Spain.

Grupo de Bioquímica de alimentos, Instituto de Investigaciones Marinas, Consejo Superior de Investigaciones Científicas, Eduardo Cabello, 6, 36208, Vigo, Spain.

出版信息

Protein Expr Purif. 2023 Dec;212:106356. doi: 10.1016/j.pep.2023.106356. Epub 2023 Aug 19.

Abstract

Decades of extensive efforts on marine collagen extraction and characterization allowed to recognize the unique and excellent characteristics of marine collagen offering advantages over that obtained from terrestrial sources. However, not all marine collagens have the same biochemical characteristics; understanding those at molecular and supramolecular level, is crucial for optimal design of applications. One relevant aspect of collagen characterization is the analysis of its different subunits (α-chains) and their intermolecular cross-links (β- and γ-components), which ultimately determine the specific functions of a particular collagen. Collagens from a teleost and an elasmobranch species were analyzed to understand the influence of their subunit composition and intermolecular crosslinking pattern on their different physicochemical behaviour. For comparative purposes a commercial mammal collagen was included in the study. Although electrophoretic profiles showed the typical composition of type I collagen for hake, blue shark and calf collagen, molar ratios of their α-chains were different indicating a different degree of dimerization of their α2-chains with implications in the presence of a different crosslinking degree pattern. Electrophoresis, amino acid composition, hydrophobicity (RP-HPLC) and molecular weight analysis (GPC-HPLC) results, besides a peptide mapping and an antioxidant activity study of the resultant peptides, would help to understand the role of different subunit collagen composition and different crosslinking pattern in the conformation of a differential quaternary supramolecular structure within different species and its biofunctional implications. The experiments developed would allow to progress in the valorization potential of fish discards and byproducts to explore commercial uses of collagens from marine origin.

摘要

几十年来,人们在海洋胶原蛋白提取和特性研究方面付出了巨大努力,从而认识到海洋胶原蛋白具有独特而优异的特性,比从陆地来源获得的胶原蛋白更具优势。然而,并非所有海洋胶原蛋白都具有相同的生化特性;在分子和超分子水平上了解这些特性,对于应用的优化设计至关重要。胶原蛋白特性研究的一个相关方面是分析其不同的亚基(α链)及其分子间交联(β和γ成分),这最终决定了特定胶原蛋白的具体功能。对硬骨鱼和软骨鱼的胶原蛋白进行了分析,以了解其亚基组成和分子间交联模式对其不同物理化学行为的影响。为了进行比较,研究中纳入了一种商业哺乳动物胶原蛋白。尽管电泳图谱显示无须鳕、蓝鲨和小牛胶原蛋白具有典型的I型胶原蛋白组成,但其α链的摩尔比不同,表明其α2链的二聚化程度不同,这意味着存在不同的交联程度模式。电泳、氨基酸组成、疏水性(反相高效液相色谱)和分子量分析(凝胶渗透色谱-高效液相色谱)结果,除了对所得肽进行肽图谱分析和抗氧化活性研究外,将有助于理解不同亚基胶原蛋白组成和不同交联模式在不同物种中差异四级超分子结构构象中的作用及其生物功能意义。所开展的实验将有助于提高鱼废料和副产品的增值潜力,以探索海洋来源胶原蛋白的商业用途。

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