首页> 外文期刊>Journal of dairy science >Short communication: Inhibition of angiotensin 1-converting enzyme by peptides derived from variants of bovine β-casein upon apical exposure to a Caco-2 cell monolayer
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Short communication: Inhibition of angiotensin 1-converting enzyme by peptides derived from variants of bovine β-casein upon apical exposure to a Caco-2 cell monolayer

机译:简短交流:根尖暴露于Caco-2细胞单层的牛β-酪蛋白变体衍生的肽抑制血管紧张素1转化酶

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摘要

This study investigated the consequence of genetically contingent amino acid substitutions in bovine β-casein (CN) genetic variants A~1, A~2, B, and I on the structure and bioactive potential of peptides following in vitro digestion. The 3-CN variants were digested in vitro using pepsin and pancreatin, and a peptide profile was obtained by liquid chromatography tandem mass spectrometry, revealing among others, the β-casomorphin precursor peptides VYPFPGPIHN and VYPFPGPIPN, derived from variant A~1/B and from A~2/I, respectively. These 2 peptides were synthesized and assessed for angiotensin 1-converting enzyme (ACE) inhibitory capacity before and after incubation with a monolayer of Caco-2 intestinal cells. The VYPFPGPIHN was a stronger ACE inhibitor than VYPFPGPIPN, with the concentration needed to reach half-maximal inhibition (IC_(50)) of 123 ± 14.2 μM versus 656 ± 7.6 μM. Exposure to a Caco-2 intestinal cell monolayer did not affect ACE inhibition by VYPFPGPIHN, but resulted in an almost 2-fold increase in inhibition by VYPFPGPIPN after incubation. Subsequent tandem mass spectrometric analysis identified the truncated peptide VYPFPGPIP, suggesting hydrolysis by a cell membrane associated peptidase. Thus, genetic variation in bovine 3-CN results in the generation of peptides that differ in bioactivity, and are differently affected by intestinal brush border pep-tidases.
机译:这项研究调查了牛β-酪蛋白(CN)遗传变异体A〜1,A〜2,B和I中遗传性或有氨基酸替代对体外消化后肽的结构和生物活性潜力的影响。使用胃蛋白酶和胰酶在体外消化3-CN变体,并通过液相色谱串联质谱法获得肽谱,其中包括衍生自变体A〜1 / B和分别来自A〜2 / I合成这2种肽,并在与单层Caco-2肠细胞孵育之前和之后评估血管紧张素1转化酶(ACE)的抑制能力。 VYPFPGPIHN是一种比VYPFPGPIPN更强的ACE抑制剂,其浓度达到123±14.2μM的一半最大抑制(IC_(50))所需的浓度为656±7.6μM。暴露于Caco-2肠单层细胞不会影响VYPFPGPIHN对ACE的抑制作用,但会导致孵育后VYPFPGPIPN对ACE的抑制作用几乎增加2倍。随后的串联质谱分析确定了截短的肽VYPFPGPIP,表明被细胞膜相关肽酶水解。因此,牛3-CN的遗传变异导致产生了具有不同生物活性的肽,并受到肠刷缘肽基肽酶的影响不同。

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