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尽管有沙库巴曲缬沙坦抑制作用,中性肽链内切酶2仍催化利钠肽的降解。

Neprilysin 2 catalyses the degradation of natriuretic peptides despite sacubitrilat Inhibition.

作者信息

Selezneva Elizaveta M, Feygina Evgeniya E, Ageeva Liudmila V, Rozov Fedor N, Kopylova Irina V, Altshuler Evgeny P, Semenov Alexander G

机构信息

HyTest LLC, Varshavskoye highway 28A, Moscow, 117186, Russia.

Friedrich Miescher Laboratory of the Max Planck Society (Friedrich- Miescher-Laboratorium der Max-Planck-Gesellschaft) Arbeitsgruppe Weir, Max-Planck-Ring 9, 72076, Tübingen, Deutschland.

出版信息

Sci Rep. 2025 Jul 28;15(1):27401. doi: 10.1038/s41598-025-10166-z.

Abstract

Neprilysin (NEP) cleaves active forms of A- and B-type natriuretic peptides (ANP and BNP) at multiple sites, reducing their compensatory effects in heart failure. Therapeutic inhibition of NEP by sacubitrilat may potentiate the beneficial effects of natriuretic peptides. Neprilysin 2 (NEP2), a close homolog of NEP, has been described in humans but remains poorly characterized. This study aimed to investigate NEP2 expression in the cardiovascular system, its ability to cleave natriuretic peptides, and its inhibition by sacubitrilat. NEP and NEP2 expression profiles were assessed using reverse transcription PCR. The efficiency of in vitro cleavage of ANP, BNP, and the BNP precursor proBNP by NEP and NEP2 recombinant soluble domains was evaluated using sandwich-type immunoassays using antibodies specific for novel proteolytic epitopes. Expression of both NEP2 and NEP was observed at the mRNA level in cardiomyocytes and endothelial cells. NEP2 cleaved ANP and BNP; however, it was insensitive to sacubitrilat at studied concentration. In contrast to NEP, we observed proBNP proteolysis by NEP2, which resulted in the formation of a truncated form (amino acid residues 5-32). Our results show that sacubitrilat-insensitive NEP2 mediates ANP and BNP proteolysis and therefore might reduce compensatory effects of natriuretic peptides in heart failure.

摘要

中性肽链内切酶(NEP)可在多个位点切割 A 型和 B 型利钠肽(ANP 和 BNP)的活性形式,降低它们在心力衰竭中的代偿作用。沙库巴曲缬沙坦对 NEP 的治疗性抑制作用可能会增强利钠肽的有益效果。Neprilysin 2(NEP2)是 NEP 的紧密同源物,已在人类中被描述,但特征仍不明确。本研究旨在调查 NEP2 在心血管系统中的表达、其切割利钠肽的能力以及沙库巴曲缬沙坦对它的抑制作用。使用逆转录 PCR 评估 NEP 和 NEP2 的表达谱。使用针对新型蛋白水解表位的特异性抗体,通过夹心型免疫测定法评估 NEP 和 NEP2 重组可溶性结构域对 ANP、BNP 以及 BNP 前体 proBNP 的体外切割效率。在心肌细胞和内皮细胞的 mRNA 水平上均观察到了 NEP2 和 NEP 的表达。NEP2 可切割 ANP 和 BNP;然而,在研究的浓度下它对沙库巴曲缬沙坦不敏感。与 NEP 不同,我们观察到 NEP2 可对 proBNP 进行蛋白水解,这导致形成一种截短形式(氨基酸残基 5 - 32)。我们的结果表明,对沙库巴曲缬沙坦不敏感的 NEP2 介导了 ANP 和 BNP 的蛋白水解,因此可能会降低利钠肽在心力衰竭中的代偿作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b073/12304097/b5c6c2b3a61a/41598_2025_10166_Fig1_HTML.jpg

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