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Characterization of leucine aminopeptidase (LAP) activity in sweet pepper fruits during ripening and its inhibition by nitration and reducing events

成熟 氨肽酶 生物化学 生物 一氧化氮 转录组 过氧亚硝酸盐 亮氨酸 基因 植物 基因表达 氨基酸 内分泌学 超氧化物
作者
María A. Muñoz‐Vargas,Juan Taboada,Salvador González‐Gordo,José M. Palma,Francisco J. Corpas
出处
期刊:Plant Cell Reports [Springer Science+Business Media]
卷期号:43 (4) 被引量:1
标识
DOI:10.1007/s00299-024-03179-x
摘要

Abstract Key message Pepper fruits contain two leucine aminopeptidase ( LAP ) genes which are differentially modulated during ripening and by nitric oxide. The LAP activity increases during ripening but is negatively modulated by nitration . Abstract Leucine aminopeptidase (LAP) is an essential metalloenzyme that cleaves N-terminal leucine residues from proteins but also metabolizes dipeptides and tripeptides. LAPs play a fundamental role in cell protein turnover and participate in physiological processes such as defense mechanisms against biotic and abiotic stresses, but little is known about their involvement in fruit physiology. This study aims to identify and characterize genes encoding LAP and evaluate their role during the ripening of pepper ( Capsicum annuum L.) fruits and under a nitric oxide (NO)-enriched environment. Using a data-mining approach of the pepper plant genome and fruit transcriptome (RNA-seq), two LAP genes, designated CaLAP1 and CaLAP2 , were identified. The time course expression analysis of these genes during different fruit ripening stages showed that whereas CaLAP1 decreased, CaLAP2 was upregulated. However, under an exogenous NO treatment of fruits, both genes were downregulated. On the contrary, it was shown that during fruit ripening LAP activity increased by 81%. An in vitro assay of the LAP activity in the presence of different modulating compounds including peroxynitrite (ONOO − ), NO donors ( S -nitrosoglutathione and nitrosocyteine), reducing agents such as reduced glutathione (GSH), l -cysteine ( l -Cys), and cyanide triggered a differential response. Thus, peroxynitrite and reducing compounds provoked around 50% inhibition of the LAP activity in green immature fruits, whereas cyanide upregulated it 1.5 folds. To our knowledge, this is the first characterization of LAP in pepper fruits as well as of its regulation by diverse modulating compounds. Based on the capacity of LAP to metabolize dipeptides and tripeptides, it could be hypothesized that the LAP might be involved in the GSH recycling during the ripening process.

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