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内啡肽-25 的酶稳定 C 末端六肽片段肽 ψ-内啡肽-6 对胰岛功能和代谢的影响。

Effects of an enzymatically stable C-terminal hexapseudopeptide fragment peptide of xenin-25, ψ-xenin-6, on pancreatic islet function and metabolism.

机构信息

SAAD Centre for Pharmacy and Diabetes, Ulster University, Coleraine, Northern Ireland, UK.

Institute of Food Chemistry and Food Biotechnology, Justus Liebig University Giessen, Germany.

出版信息

Mol Cell Endocrinol. 2019 Oct 1;496:110523. doi: 10.1016/j.mce.2019.110523. Epub 2019 Jul 25.

Abstract

Xenin-25 undergoes rapid enzyme metabolism following secretion. Early studies demonstrated bioactivity of a C-terminal hexapeptide fragment of xenin-25, namely xenin-6, which were enhanced through introduction of a reduced N-terminal peptide bond, to yield Ψ-xenin-6. The present study was undertaken to define the biological actions and potential antidiabetic properties of Ψ-xenin-6. In vitro enzymatic stability, insulin and glucagon secretory activity, as well as effects on beta-cell survival were determined. Studies in mice were used to assess the impact of Ψ-xenin-6 on glucose homeostasis and satiety. Ψ-xenin-6 was resistant to murine plasma degradation. In BRIN-BD11 cells and isolated murine islets, Ψ-xenin-6 significantly stimulated insulin secretion, and prominently enhanced the insulinotropic actions of GIP. Xenin-6 and Ψ-xenin-6 had no impact on glucagon secretion, although xenin-6 partially reversed the glucagonotropic action of GIP. Further in vitro investigations revealed that, similar to GLP-1, Ψ-xenin-6 significantly augmented proliferation of human and rodent clonal beta-cells, whilst also fully protecting against cytokine-induced beta-cell cytotoxicity, with greater potency than xenin-25 and xenin-6. When administered to mice in combination with glucose, Ψ-xenin-6 significantly reduced glucose levels and enhanced glucose-induced insulin release, with a duration of biological action beyond 8 h. Ψ-xenin-6 also significantly enhanced the glucose-lowering action of GIP in vivo. In overnight fasted mice, Ψ-xenin-6 exhibited satiety actions at both 25 and 250 nmol/kg. These data demonstrates that Ψ-xenin-6 is a metabolically stable C-terminal fragment analogue of xenin-25, with a metabolic action profile that merits further study as a potential antidiabetic compound.

摘要

Xenin-25 在分泌后会迅速被酶代谢。早期的研究表明 xenin-25 的 C 端六肽片段,即 xenin-6 具有生物活性,通过引入一个还原的 N 端肽键,可增强其生物活性,得到 Ψ-xenin-6。本研究旨在定义 Ψ-xenin-6 的生物学作用和潜在的抗糖尿病特性。测定了其在体外的酶稳定性、胰岛素和胰高血糖素分泌活性以及对β细胞存活的影响。在小鼠中进行了研究,以评估 Ψ-xenin-6 对葡萄糖稳态和饱腹感的影响。Ψ-xenin-6 抵抗鼠血浆降解。在 BRIN-BD11 细胞和分离的鼠胰岛中,Ψ-xenin-6 显著刺激胰岛素分泌,并显著增强 GIP 的胰岛素促分泌作用。Xenin-6 和 Ψ-xenin-6 对胰高血糖素分泌没有影响,尽管 xenin-6 部分逆转了 GIP 的胰高血糖素作用。进一步的体外研究表明,与 GLP-1 相似,Ψ-xenin-6 显著增加了人源和啮齿动物克隆β细胞的增殖,同时完全保护β细胞免受细胞因子诱导的细胞毒性,其效力大于 xenin-25 和 xenin-6。当与葡萄糖一起给予小鼠时,Ψ-xenin-6 显著降低了血糖水平并增强了葡萄糖诱导的胰岛素释放,其生物学作用持续时间超过 8 小时。Ψ-xenin-6 还显著增强了 GIP 在体内的降血糖作用。在 overnight 禁食的小鼠中,Ψ-xenin-6 在 25 和 250nmol/kg 时均表现出饱腹感作用。这些数据表明,Ψ-xenin-6 是 xenin-25 的代谢稳定的 C 端片段类似物,具有代谢作用谱,值得进一步研究作为一种潜在的抗糖尿病化合物。

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