β-酪蛋白变异对蓝奶酪中β-酪啡肽形成的影响:通过肽组学分析调查关键驱动因素。

Simonetta Caira, Gianluca Picariello, Sabrina De Pascale, Antonio Dario Troise, Alfonso Piscitelli, Gabriella Pinto, Francesca Marino, Andrea Scaloni, Francesco Addeo
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引用次数: 0

摘要

β-酪蛋白是由β-酪蛋白(β-CN)的蛋白水解裂解产生的食物相关肽,因其类阿片活性而被广泛研究。本研究旨在确定BCM7、BCM6和BCM5在不同牛奶蓝纹奶酪中的存在,并描述其形成背后的复杂机制,重点研究它们来自具有β-CN A1和A2变体的奶酪。利用纳米olc - esi - q - orbitrapp -MS/MS和先进的计算工具,我们研究了含有β-CN A1和A2变体的牛奶中的蓝奥弗涅、戈尔根左拉、Stilton和Bergader蓝奶酪的肽段。这种综合方法确定了BCM7在所有奶酪样品中的存在,尽管浓度不同。有证据表明,所有含有β-CN A1和A2变体的奶酪都表现出蛋白质水解,由于多种盘古青霉外肽酶的协同活性,导致BCM7明显释放。该研究深入了解了各种蓝纹奶酪中BCM7、BCM6和BCM5形成的过程,确定了可能控制β-CN A1和A2变体中BCMs蛋白水解释放的分子决定因素,以及霉菌肽酶和奶酪多肽底物之间复杂的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of β-casein variants on the formation of β-casomorphins in blue cheeses: Investigating key drivers through peptidomic analysis.

β-Casomorphins (BCMs), food-associated peptides resulting from the proteolytic cleavage of β-casein (β-CN), have been widely investigated for their opioid-like activity. This research aimed to identify the presence of BCM7, BCM6, and BCM5 in different bovine milk-deriving blue cheese types and to describe the intricate mechanisms behind their formation, focusing on their origin from cheese with β-CN A1 and A2 variants. Using nanoLC-ESI-Q-Orbitrap-MS/MS and advanced computational tools, we explored the peptidomes of Bleu d'Auvergne, Gorgonzola, Stilton, and Bergader blue cheeses from milk containing both β-CN A1 and A2 variants. This integrated approach ascertained the occurrence of BCM7 in all cheese samples, although at different concentrations. Evidence demonstrated that all cheeses containing β-CN A1 and A2 variants exhibited proteolysis, resulting in a pronounced BCM7 release because of the concerted activity of multiple Penicillium roqueforti exopeptidases. This study provides insights into the processes underpinning the formation of BCM7, BCM6 and BCM5 in various blue cheese types, identifying putative molecular determinants that might govern the proteolytic release of BCMs from both β-CN A1 and A2 variants as well as the complex interplay between mold peptidases and cheese polypeptide substrates.

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