Hallier Benjamin, Schiemann Ronja, Cordes Eva, Vitos-Faleato Jessica, Walter Stefan, Heinisch Jürgen J, Malmendal Anders, Paululat Achim, Meyer Heiko
Department of Developmental Biology, University of Osnabrück, Osnabrück, Germany.
Department of Biomedical Research, Institute for Research in Biomedicine, Barcelona, Spain.
Elife. 2016 Dec 6;5:e19430. doi: 10.7554/eLife.19430.
Insulin and IGF signaling are critical to numerous developmental and physiological processes, with perturbations being pathognomonic of various diseases, including diabetes. Although the functional roles of the respective signaling pathways have been extensively studied, the control of insulin production and release is only partially understood. Herein, we show that in expression of insulin-like peptides is regulated by neprilysin activity. Concomitant phenotypes of altered neprilysin expression included impaired food intake, reduced body size, and characteristic changes in the metabolite composition. Ectopic expression of a catalytically inactive mutant did not elicit any of the phenotypes, which confirms abnormal peptide hydrolysis as a causative factor. A screen for corresponding substrates of the neprilysin identified distinct peptides that regulate insulin-like peptide expression, feeding behavior, or both. The high functional conservation of neprilysins and their substrates renders the characterized principles applicable to numerous species, including higher eukaryotes and humans.
胰岛素和胰岛素样生长因子信号传导对众多发育和生理过程至关重要,其紊乱是包括糖尿病在内的各种疾病的特征。尽管各自信号通路的功能作用已得到广泛研究,但对胰岛素产生和释放的控制仍仅部分了解。在此,我们表明胰岛素样肽的表达受中性内肽酶活性调节。中性内肽酶表达改变的伴随表型包括食物摄入受损、体型减小以及代谢物组成的特征性变化。催化失活突变体的异位表达未引发任何表型,这证实异常肽水解是一个致病因素。对中性内肽酶相应底物的筛选鉴定出了调节胰岛素样肽表达、进食行为或两者的不同肽段。中性内肽酶及其底物的高度功能保守性使得所表征的原理适用于众多物种,包括高等真核生物和人类。