Identification of bioactive peptides in hypoallergenic infant milk formulas by CE‐TOF‐MS assisted by semiempirical model of electromigration behavior

Идентификация биологически активных пептидов в гипоаллергенных заменителях грудного молока с использованием CE‑TOF‑MS с поддержкой полуэмпирической модели электромиграционного поведения
Fernando Benavente, Sergio Català‐Clariana, Estela Giménez, José Barbosa, Victòria Sanz‐Nebot
2013-04-08

CE-TOF-MSbioactive peptideshypoallergenic infant milk formulassemiempirical electrophoretic mobility model
Biologically active peptides derived from complex bovine milk protein hydrolysates are of particular interest in food science and nutrition because they have been shown to play different physiological roles, providing benefits in human health. In this study, we used CE-TOF-MS for separation and identification of bioactive peptides in three hypoallergenic infant milk formulas. An appropriate sample cleanup using a citrate buffer with DTT and urea followed by SPE with Sep-Pack® C18 and StrataX™ cartridges allowed the detection of a large number of low molecular mass bioactive peptides. This preliminary identification was solely based on the measured experimental monoisotopic molecular mass values (M(exp)). Later, we evaluated the classical semiempirical relationships between electrophoretic mobility and charge-to-mass ratio (m(e) vs. q/M(α), α = 1/2 for the classical polymer model) to describe their migration behavior. The assistance of migration prediction proved to be useful to improve reliability of the identification, avoiding misinterpretations and solving some identity conflicts. After revision, the identity of 24, 30, and 38 bioactive peptides was confirmed in each of the three infant milk formulas. A significant number of these peptides were reported as inhibitors of angiotensin-converting enzyme, however, the presence of sequences with other biological activities such as antihypertensive, antithrombotic, hypocholesterolemic, immunomodulation, cytotoxicity, antioxidant, antimicrobial, antigenic, or opioid was also confirmed.
1
A significant fraction of confirmed peptides were angiotensin-converting enzyme (ACE) inhibitors, and other confirmed activities included antihypertensive, antithrombotic, hypocholesterolemic, immunomodulatory, cytotoxic, antioxidant, antimicrobial, antigenic, and opioid effects.
2
After applying migration prediction and revision, 24, 30, and 38 bioactive peptides were confirmed in the three infant formulas, respectively.
3
CE-TOF-MS combined with citrate buffer/DTT/urea cleanup and SPE (Sep-Pack C18 and StrataX) enabled detection of many low molecular mass bioactive peptides in three hypoallergenic infant milk formulas.
4
Initial peptide identification based solely on experimental monoisotopic masses (M(exp)) was supplemented by semiempirical electrophoretic mobility modeling to predict migration behavior.
5
Using classical semiempirical relationships between electrophoretic mobility and charge-to-mass ratio (m(e) vs. q/M(α), α=1/2) improved identification reliability and resolved identity conflicts.

Bioactive peptides in three hypoallergenic infant milk formulas

Identification and electrophoretic migration behavior analysis (CE‑TOF‑MS aided by semiempirical electromigration model) to confirm peptide identities and bioactivities

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2013-04-08
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Fernando Benavente
Sergio Català‐Clariana
Estela Giménez
José Barbosa
Victòria Sanz‐Nebot
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