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海鲜肌球蛋白作为胃肠道消化后抗血管紧张素转换酶和二肽基肽酶肽的来源:化学信息学研究。

Seafood Paramyosins as Sources of Anti-Angiotensin-Converting-Enzyme and Anti-Dipeptidyl-Peptidase Peptides after Gastrointestinal Digestion: A Cheminformatic Investigation.

机构信息

Department of Chemical Science, Faculty of Science, Universiti Tunku Abdul Rahman, Kampar 31900, Malaysia.

Center for Agriculture and Food Research, Universiti Tunku Abdul Rahman, Kampar 31900, Malaysia.

出版信息

Molecules. 2022 Jun 16;27(12):3864. doi: 10.3390/molecules27123864.

Abstract

Paramyosins, muscle proteins occurring exclusively in invertebrates, are abundant in seafoods. The potential of seafood paramyosins (SP) as sources of anti-angiotensin-converting-enzyme (ACE) and anti-dipeptidyl-peptidase (DPP-IV) peptides is underexplored. This in silico study investigated the release of anti-ACE and anti-DPP-IV peptides from SP after gastrointestinal (GI) digestion. We focused on SP of the common octopus, Humboldt squid, Japanese abalone, Japanese scallop, Mediterranean mussel, Pacific oyster, sea cucumber, and Whiteleg shrimp. SP protein sequences were digested on BIOPEP-UWM, followed by identification of known anti-ACE and anti-DPP-IV peptides liberated. Upon screening for high-GI-absorption, non-allergenicity, and non-toxicity, shortlisted peptides were analyzed via molecular docking and dynamic to elucidate mechanisms of interactions with ACE and DPP-IV. Potential novel anti-ACE and anti-DPP-IV peptides were predicted by SwissTargetPrediction. Physicochemical and pharmacokinetics of peptides were predicted with SwissADME. GI digestion liberated 2853 fragments from SP. This comprised 26 known anti-ACE and 53 anti-DPP-IV peptides exhibiting high-GI-absorption, non-allergenicity, and non-toxicity. SwissTargetPrediction predicted three putative anti-ACE (GIL, DL, AK) and one putative anti-DPP-IV (IAL) peptides. Molecular docking found most of the anti-ACE peptides may be non-competitive inhibitors, whereas all anti-DPP-IV peptides likely competitive inhibitors. Twenty-five nanoseconds molecular dynamics simulation suggests the stability of these screened peptides, including the three predicted anti-ACE and one predicted anti-DPP-IV peptides. Seven dipeptides resembling approved oral-bioavailable peptide drugs in physicochemical and pharmacokinetic properties were revealed: AY, CF, EF, TF, TY, VF, and VY. In conclusion, our study presented in silico evidence for SP being a promising source of bioavailable and safe anti-ACE and anti-DPP-IV peptides following GI digestions.

摘要

肌球蛋白,仅存在于无脊椎动物中的肌肉蛋白,在海鲜中含量丰富。海鲜肌球蛋白 (SP) 作为抗血管紧张素转换酶 (ACE) 和二肽基肽酶-4 (DPP-IV) 肽的潜在来源尚未得到充分探索。本计算机研究调查了 SP 在胃肠道 (GI) 消化后释放抗 ACE 和抗 DPP-IV 肽的情况。我们专注于普通章鱼、洪堡鱿鱼、日本鲍鱼、日本扇贝、地中海贻贝、太平洋牡蛎、海参和白对虾的 SP。使用 BIOPEP-UWM 对 SP 蛋白序列进行消化,然后鉴定释放的已知抗 ACE 和抗 DPP-IV 肽。经过高 GI 吸收、非变应原性和非毒性筛选后,将短名单肽进行分子对接和动力学分析,以阐明与 ACE 和 DPP-IV 相互作用的机制。通过 SwissTargetPrediction 预测潜在的新型抗 ACE 和抗 DPP-IV 肽。使用 SwissADME 预测肽的理化性质和药代动力学。GI 消化从 SP 中释放出 2853 个片段。这包括 26 种已知的抗 ACE 和 53 种抗 DPP-IV 肽,具有高 GI 吸收、非变应原性和非毒性。SwissTargetPrediction 预测了三种假定的抗 ACE (GIL、DL、AK) 和一种假定的抗 DPP-IV (IAL) 肽。分子对接发现大多数抗 ACE 肽可能是非竞争性抑制剂,而所有抗 DPP-IV 肽可能是竞争性抑制剂。二十五纳秒分子动力学模拟表明这些筛选肽的稳定性,包括三种预测的抗 ACE 和一种预测的抗 DPP-IV 肽。在理化性质和药代动力学性质上与已批准的口服生物利用肽药物相似的七种二肽被揭示:AY、CF、EF、TF、TY、VF 和 VY。总之,我们的研究提供了计算机证据,证明 SP 是一种有前途的生物可利用和安全的抗 ACE 和抗 DPP-IV 肽的来源,可通过 GI 消化获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db37/9229108/3cd05dfec175/molecules-27-03864-g001.jpg

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