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Structure-based modelling of hemocyanin allergenicity in squid and its response to high hydrostatic pressure

机译:鱿鱼血蓝蛋白致敏性的基于结构的建模及其对高静水压力的响应

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摘要

The secondary, tertiary, and quaternary structures of squid hemocyanin (Hc) were characterised, and the relationship between Hc structure and allergenicity responses to high hydrostatic pressure (HHP) was modelled. The Hc allergenicity varied with its protein structure. Electrophoresis analysis revealed that HHP treatment significantly decreased the band intensity of Hc when increasing pressure from 200 and 400 MPa to 600 MPa. The protein structure analysis of squid Hc showed that while HHP treatment decreased the α-helix content, free sulfhydryl content, and Rg, it increased the random coil content, surface hydrophobicity index (Ho), Guinier aggregation number (〈Nagg〉G) and average aggregation number (〈Nagg〉Q). The α-helix and random coil contents of the 600 MPa treated samples were 23.67% and 37.54%, respectively, compared to 32.37% and 32.02% in the control, respectively. HHP treatment decreased the IgE and IgG-binding capacities, indicating a significant decrease in the allergenicity (P< 0.05) of squid Hc. This study provided meaningful information of applying HHP to reduce allergenicity, and explained the responses of Hc protein structure to HHP for lowering the allergenicity of squid.
机译:表征了鱿鱼血蓝蛋白(Hc)的二级,三级和四级结构,并建模了Hc结构与对高静水压(HHP)的过敏性反应之间的关系。 Hc致敏性随其蛋白质结构而变化。电泳分析表明,当压力从200和400 MPa增加到600 MPa时,HHP处理显着降低了Hc的能带强度。鱿鱼Hc的蛋白质结构分析表明,尽管HHP处理降低了α-螺旋含量,游离巯基含量和Rg,但增加了无规卷曲含量,表面疏水性指数(Ho),吉尼尔聚集数(〈Nagg〉G)和平均聚集数(〈Nagg〉Q)。 600 MPa处理的样品的α螺旋含量和无规卷曲含量分别为23.67%和37.54%,而对照样品分别为32.37%和32.02%。 HHP处理降低了IgE和IgG的结合能力,表明鱿鱼Hc的致敏性显着降低(P <0.05)。这项研究为应用HHP降低变应原性提供了有意义的信息,并解释了Hc蛋白结构对HHP降低鱿鱼变应原性的反应。

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