Department of Environmental, Biological and Pharmaceutical Sciences and Technologies (DiSTABiF), University of Campania 'Luigi Vanvitelli', Via Vivaldi 43, 81100 Caserta, Italy.
Department of Environmental, Biological and Pharmaceutical Sciences and Technologies (DiSTABiF), University of Campania 'Luigi Vanvitelli', Via Vivaldi 43, 81100 Caserta, Italy.
Int J Biol Macromol. 2022 Aug 1;214:459-469. doi: 10.1016/j.ijbiomac.2022.06.128. Epub 2022 Jun 23.
Here, we report the characterization (purification, autoxidation rate, pseudoperoxidase activity) and amino acid sequence determination of S. scombrus (Atlantic mackerel) and S. colias (Tinker mackerel) mioglobins (Mbs), considering the increasing consumption of fresh and canned mackerel meat and Mb implication in meat storage (e.g.: browning and lipid oxidation). We found that Atlantic mackerel Mb has major autoxidation rate (0.204 ± 0.013 h) compared to Tinker mackerel Mb (0.140 ± 0.009 h), while the pseudoperoxidase activity is major for Tinker mackerel (K: 87.71 ± 7.19 μM; k: 0.32 s) Mb with respect to Atlantic mackerel (K: 96.08 ± 6.91 μM; k: 0.50 s). These functional differences are confirmed by primary structure determination, in which six amino acid substitutions are found, with the first N-terminal amino acid residue acetylated. Furthermore, we predicted by AphaFold 3D model both fish Mbs and used them to investigate the possible structural differences. In addition, phylogenetic analysis using Mb sequences from Scombridae family confirms that Atlantic and Tinker mackerels are two distinct species. Finally, an analytic qualitative RP-HPLC method to distinguish S. scombrus and S. colias specimens was developed considering the different retention times of the two mackerel apoMbs.
在这里,我们报告了大西洋马鲛鱼(Scomber scombrus)和黄鳍金枪鱼(Sarda sarda)肌红蛋白(Mbs)的特性(纯化、自动氧化速率、假过氧化物酶活性)和氨基酸序列测定,考虑到新鲜和罐装马鲛鱼肉的消费不断增加以及 Mb 在肉类储存中的作用(例如:褐变和脂质氧化)。我们发现,与黄鳍金枪鱼 Mb 相比,大西洋马鲛鱼 Mb 的自动氧化速率更高(0.204 ± 0.013 h),而假过氧化物酶活性更高的是黄鳍金枪鱼 Mb(K:87.71 ± 7.19 μM;k:0.32 s),而不是大西洋马鲛鱼 Mb(K:96.08 ± 6.91 μM;k:0.50 s)。这些功能差异通过一级结构测定得到了证实,其中发现了六个氨基酸取代,并且第一个 N 末端氨基酸残基乙酰化。此外,我们使用 AlphaFold 3D 模型预测了两种鱼类 Mb,并使用它们来研究可能的结构差异。此外,使用 Scombridae 家族的 Mb 序列进行的系统发育分析证实,大西洋马鲛鱼和黄鳍金枪鱼是两个不同的物种。最后,考虑到两种马鲛鱼 apoMbs 的保留时间不同,开发了一种用于区分 S. scombrus 和 S. colias 标本的分析定性 RP-HPLC 方法。