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将 pepcan-23 鉴定为 RVD-hemopressin(pepcan-12)的前肽及 hemopressins 在小鼠体内的稳定性。

Characterization of pepcan-23 as pro-peptide of RVD-hemopressin (pepcan-12) and stability of hemopressins in mice.

机构信息

Institute of Biochemistry and Molecular Medicine, University of Bern, CH-3012, Bern, Switzerland; Graduate School for Cellular and Biomedical Sciences (GCB), University of Bern, Switzerland.

Institute of Biochemistry and Molecular Medicine, University of Bern, CH-3012, Bern, Switzerland.

出版信息

Adv Biol Regul. 2021 May;80:100808. doi: 10.1016/j.jbior.2021.100808. Epub 2021 Mar 24.

Abstract

Hemopressins ((x)-PVNFKLLSH) or peptide endocannabinoids (pepcans) can bind to cannabinoid receptors. RVD-hemopressin (pepcan-12) was shown to act as endogenous allosteric modulator of cannabinoid receptors, with opposite effects on CB1 and CB2, respectively. Moreover, the N-terminally elongated pepcan-23 was detected in different tissues and was postulated to be the pro-peptide of RVD-hemopressin. Currently, data about the pharmacokinetics, tissue distribution and stability of hemopressin-type peptides are lacking. Here we investigated the secondary structure and physiological role of pepcan-23 as precursor of RVD-hemopressin. We assessed the metabolic stability of these peptides, including hemopressin. Using LC-ESI-MS/MS, pepcan-23 was measured in mouse tissues and human whole blood (~50 pmol/mL) and in plasma was the most stable endogenous peptide containing the hemopressin sequence. Using peptide spiked human whole blood, mouse adrenal gland and liver homogenates demonstrate that pepcan-23 acts as endogenous pro-peptide of RVD-hemopressin. Furthermore, administered pepcan-23 converted to RVD-hemopressin in mice. In circular dichroism spectroscopy, pepcan-23 showed a helix-unordered-helix structure and efficiently formed complexes with divalent metal ions, in particular Cu(II) and Ni(II). Hemopressin and RVD-hemopressin were not bioavailable to the brain and showed poor stability in plasma, in agreement with their overall poor biodistribution. Acute hemopressin administration (100 mg/kg) did not modulate endogenous RVD-hemopressin/pepcan-23 levels or influence the endocannabinoid lipidome but increased 1-stearoyl-2-arachidonoyl-sn-glycerol. Overall, we show that pepcan-23 is a biological pro-peptide of RVD-hemopressin and divalent metal ions may regulate this process. Given the lack of metabolic stability of hemopressins, administration of pepcan-23 as pro-peptide may be suitable in pharmacological experiments as it is converted to RVD-hemopressin in vivo.

摘要

血加压素 ((x)-PVNFKLLSH) 或肽类内源性大麻素 (pepcans) 可以与大麻素受体结合。RVD-血加压素 (pepcan-12) 被证明是大麻素受体的内源性变构调节剂,分别对 CB1 和 CB2 产生相反的作用。此外,在不同组织中检测到 N 端延长的 pepcan-23,并推测它是 RVD-血加压素的前肽。目前,关于血加压素型肽的药代动力学、组织分布和稳定性的数据尚缺乏。在这里,我们研究了 pepcan-23 作为 RVD-血加压素前体的二级结构和生理作用。我们评估了这些肽,包括血加压素的代谢稳定性。使用 LC-ESI-MS/MS,在小鼠组织和人全血 (~50 pmol/mL) 中测量了 pepcan-23,并在血浆中发现了最稳定的含有血加压素序列的内源性肽。使用肽添加的人全血、小鼠肾上腺和肝匀浆证明 pepcan-23 作为 RVD-血加压素的内源性前肽。此外,给予 pepcan-23 可在小鼠体内转化为 RVD-血加压素。在圆二色性光谱中,pepcan-23 显示出螺旋-无规卷曲-螺旋结构,并能有效地与二价金属离子,特别是 Cu(II) 和 Ni(II) 形成复合物。血加压素和 RVD-血加压素不能被大脑吸收,且在血浆中的稳定性较差,这与它们整体较差的生物分布一致。急性给予血加压素 (100mg/kg) 不会调节内源性 RVD-血加压素/pepcan-23 水平,也不会影响内源性大麻素脂质组,但会增加 1-硬脂酰基-2-花生四烯酰基-sn-甘油。总的来说,我们表明 pepcan-23 是 RVD-血加压素的生物前肽,二价金属离子可能调节这个过程。鉴于血加压素缺乏代谢稳定性,作为前肽给予 pepcan-23 可能适合药理学实验,因为它在体内被转化为 RVD-血加压素。

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