食品科学 ›› 2026, Vol. 47 ›› Issue (14): 136-143.doi: 10.7506/spkx1002-6630-20260110-085

• 生物工程 • 上一篇    

木糖葡萄球菌ATCC 29971产一氧化氮合酶特性及诱导表达

荆金菊,范宇航,陈倩,刘骞,孔保华   

  1. (东北农业大学食品学院,黑龙江?哈尔滨 150030)
  • 发布日期:2026-08-24
  • 基金资助:
    国家自然科学基金面上项目(32372373);国家自然科学基金区域创新发展联合基金重点支持项目(U22A20547)

Characterization and Induced Expression of Nitric Oxide Synthase Produced by Staphylococcus xylosus ATCC 29971

JING Jinju, FAN Yuhang, CHEN Qian, LIU Qian, KONG Baohua   

  1. (College of Food Science, Northeast Agricultural University, Harbin 150030, China)
  • Published:2026-08-24

摘要: 本研究评估木糖葡萄球菌(Staphylococcus xylosus)ATCC 29971所产一氧化氮合酶(nitric oxide synthase,NOS)的酶学特性及产酶诱导表达效果,并在高铁肌红蛋白模拟体系中探讨不同诱导因子调控NOS活性对菌株呈色能力的影响。结果表明,NOS在45 ℃时表现出最强的催化活性,其最适pH值为7,且在pH 4条件下NOS仍具有良好的稳定性。金属离子中Na+对NOS活性具有显著的抑制效果,而Ca2+能显著增强NOS的活性(P<0.05)。NOS最大反应速率和米氏常数分别为0.90 μmol/(L·min)和9.98 μmol/L。诱导因子VC(1 mmol/L)、蔗糖(5%)或L-精氨酸(50 mmol/L)对NOS活性提升效果最佳(P<0.05)。在高铁肌红蛋白模拟体系中,上述诱导因子可显著提高体系的a*值,同时增强体系在542 nm和581 nm处的特征吸收峰强度。诱导因子能够通过提升NOS活性,有效促进高铁肌红蛋白向亚硝基肌红蛋白转化,从而改善呈色效果。本研究阐明S. xylosus ATCC 29971 NOS的酶学特性及其产酶调控策略,为低硝发酵肉制品呈色及功能化应用提供一定参考。

关键词: 木糖葡萄球菌;一氧化氮合酶;酶学特性;诱导表达;呈色效果

Abstract: This study aimed to evaluate the enzymatic properties and inducible expression efficiency of nitric oxide synthase (NOS) produced by Staphylococcus xylosus ATCC 29971, and to explore the effects of different inducers on the color development capacity of the strain by regulating NOS activity in a metmyoglobin model system. Results showed that NOS exhibited the highest catalytic activity at 45 ℃, with an optimal pH of 7.0, and maintained favorable stability even at pH 4.0. Na+ exerted a significant inhibitory effect on NOS activity, whereas Ca2+ effectively enhanced NOS activity (P < 0.05). The maximum reaction velocity and Michaelis constant of NOS were determined to be 0.90 μmol/(L·min) and 9.98 μmol/L, respectively. Ascorbic acid and L-arginine showed the most prominent enhancing effects on NOS activity at 1 mmol/L and 50 mmol/L, respectively (P < 0.05). Among three sugars tested, sucrose (5%) was the most effective inducer of NOS. In the metmyoglobin model system, these inducers significantly increased the a* value and strengthened the intensity of the characteristic absorption peaks at 542 and 581 nm. These findings indicated that the inducers could effectively facilitate the conversion of metmyoglobin to nitrosylmyoglobin by improving NOS activity, thereby enhancing the color development. By clarifying the enzymatic properties of NOS from S. xylosus ATCC 29971 and its regulatory strategies for enzyme production, this study provides a valuable reference for color development and functional applications in low-nitrite fermented meat products.

Key words: Staphylococcus xylosus; nitric oxide synthase; enzymatic properties; induced expression; color development

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