Casini G. Neuropeptides and retinal development. Arch Ital Biol. 2005;143(3–4):191–8.
Escudero Castelan N, Semmens DC, Guerra LAY, Zandawala M, Dos Reis M, Slade SE, Scrivens JH, Zampronio CG, Jones AM, Mirabeau O, et al. Receptor deorphanization in an echinoderm reveals kisspeptin evolution and relationship with SALMFamide neuropeptides. BMC Biol. 2022;20(1):187.
Article PubMed PubMed Central CAS Google Scholar
Gozes I, Brenneman DE. Neuropeptides as growth and differentiation factors in general and VIP in particular. J Mol Neurosci. 1993;4(1):1–9.
Article PubMed CAS Google Scholar
Choi U, Hu M, Zhang Q, Sieburth D: The head mesodermal cell couples FMRFamide neuropeptide signaling with rhythmic muscle contraction in C. elegans. Nat Commun 2023, 14(1):4218.
Yoneda M, Watanobe H, Terano A. Central regulation of hepatic function by neuropeptides. J Gastroenterol. 2001;36(6):361–7.
Article PubMed CAS Google Scholar
Xu W, Qin X, Liu Y, Chen J, Wang Y: Advances in enzyme-responsive supramolecular in situ self-assembled peptide for drug delivery. Curr Drug Deliv 2023.
De Fruyt N, Yu AJ, Rankin CH, Beets I, Chew YL: The role of neuropeptides in learning: insights from C. elegans. Int J Biochem Cell Biol 2020, 125:105801.
Borbely E, Scheich B, Helyes Z. Neuropeptides in learning and memory. Neuropeptides. 2013;47(6):439–50.
Article PubMed CAS Google Scholar
Ogren SO, Kuteeva E, Elvander-Tottie E, Hokfelt T. Neuropeptides in learning and memory processes with focus on galanin. Eur J Pharmacol. 2010;626(1):9–17.
Botelho M, Cavadas C. Neuropeptide Y: an anti-aging player? Trends Neurosci. 2015;38(11):701–11.
Article PubMed CAS Google Scholar
Wang Y, Wang M, Yin S, Jang R, Wang J, Xue Z, Xu T: NeuroPep: a comprehensive resource of neuropeptides. Database (Oxford) 2015, 2015:bav038.
Hokfelt T, Bartfai T, Bloom F. Neuropeptides: opportunities for drug discovery. Lancet Neurol. 2003;2(8):463–72.
Tyburski AL, Cheng L, Assari S, Darvish K, Elliott MB. Frequent mild head injury promotes trigeminal sensitivity concomitant with microglial proliferation, astrocytosis, and increased neuropeptide levels in the trigeminal pain system. J Headache Pain. 2017;18(1):16.
Article PubMed PubMed Central Google Scholar
Carniglia L, Ramírez D, Durand D, Saba J, Turati J, Caruso C, Scimonelli TN, Lasaga M. Neuropeptides and microglial activation in inflammation, pain, and neurodegenerative diseases. Mediators Inflamm. 2017;2017(1):5048616.
PubMed PubMed Central Google Scholar
Cai W, Kim C-H, Go H-J, Egertová M, Zampronio CG, Jones AM, Park NG, Elphick MR. Biochemical, anatomical, and pharmacological characterization of calcitonin-type neuropeptides in starfish: discovery of an ancient role as muscle relaxants. Front Neurosci. 2018;12:382.
Article PubMed PubMed Central Google Scholar
Sobrino Crespo C, Perianes Cachero A, Puebla Jimenez L, Barrios V, Arilla Ferreiro E. Peptides and food intake. Front Endocrinol. 2014;5:58.
Mishra P, Yang SE, Montgomery AB, Reed AR, Rodan AR, Rothenfluh A. The fly liquid-food electroshock assay (FLEA) suggests opposite roles for neuropeptide F in avoidance of bitterness and shock. BMC Biol. 2021;19(1):31.
Article PubMed PubMed Central CAS Google Scholar
Odekunle EA, Semmens DC, Martynyuk N, Tinoco AB, Garewal AK, Patel RR, Blowes LM, Zandawala M, Delroisse J, Slade SE, et al. Ancient role of vasopressin/oxytocin-type neuropeptides as regulators of feeding revealed in an echinoderm. BMC Biol. 2019;17(1):60.
Article PubMed PubMed Central Google Scholar
Valente R, Cordeiro M, Pinto B, Machado A, Alves F, Sousa-Pinto I, Ruivo R, Castro LFC. Alterations of pleiotropic neuropeptide-receptor gene couples in Cetacea. BMC Biol. 2024;22(1):186.
Article PubMed PubMed Central CAS Google Scholar
Saini M, Trehan K, Thakur S, Modi A, Jain SK: Advances in iron deficiency anaemia management: exploring novel drug delivery systems and future perspectives. Curr Drug Deliv 2024.
Shahjahan M, Kitahashi T, Parhar IS. Central pathways integrating metabolism and reproduction in teleosts. Front Endocrinol. 2014;5:36.
Jonsson M, Morin M, Wang CK, Craik DJ, Degnan SM, Degnan BM. Sex-specific expression of pheromones and other signals in gravid starfish. BMC Biol. 2022;20(1):288.
Article PubMed PubMed Central CAS Google Scholar
Hu S, Wang Y, Han X, Dai M, Zhang Y, Ma Y, Weng S, Xiao L. Activation of oxytocin receptors in mouse GABAergic amacrine cells modulates retinal dopaminergic signaling. BMC Biol. 2022;20(1):205.
Article PubMed PubMed Central CAS Google Scholar
Kormos V, Gaszner B. Role of neuropeptides in anxiety, stress, and depression: from animals to humans. Neuropeptides. 2013;47(6):401–19.
Article PubMed CAS Google Scholar
Hökfelt T, Broberger C. Xu Z-QD, Sergeyev V, Ubink R, Diez M: Neuropeptides—an overview. Neuropharmacology. 2000;39(8):1337–56.
Jacobson LH, Hoyer D, de Lecea L. Hypocretins (orexins): the ultimate translational neuropeptides. J Intern Med. 2022;291(5):533–56.
Article PubMed CAS Google Scholar
Rana T, Behl T, Sehgal A, Singh S, Sharma N, Abdeen A, Ibrahim SF, Mani V, Iqbal MS, Bhatia S et al: Exploring the role of neuropeptides in depression and anxiety. Progress in Neuro-Psychopharmacology & Biological Psychiatry 2022, 114.
Shen YC, Sun X, Li L, Zhang HY, Huang ZL, Wang YQ: Roles of neuropeptides in sleep-wake regulation. Int J Mol Sci 2022, 23(9).
Wu Y, Berisha A, Borniger JC. Neuropeptides in cancer: friend and foe? Adv Biol (Weinh). 2022;6(9): e2200111.
Lasagni Vitar RM, Rama P, Ferrari G. The two-faced effects of nerves and neuropeptides in corneal diseases. Prog Retin Eye Res. 2022;86: 100974.
Article PubMed CAS Google Scholar
Xu J, Xu L, Sui P, Chen J, Moya EA, Hume P, Janssen WJ, Duran JM, Thistlethwaite P, Carlin A et al: Excess neuropeptides in lung signal through endothelial cells to impair gas exchange. Dev Cell 2022, 57(7):839–853 e836.
Wang J, Yin T, Xiao X, He D, Xue Z, Jiang X, Wang Y: StraPep: a structure database of bioactive peptides. Database (Oxford) 2018, 2018.
Polfer NC, Oomens J. Reaction products in mass spectrometry elucidated with infrared spectroscopy. Phys Chem Chem Phys. 2007;9(29):3804–17.
Article PubMed CAS Google Scholar
Patriarchi T. New technologies to investigate neuropeptides at scale. ACS Chem Neurosci. 2022;13(16):2353–5.
Article PubMed CAS Google Scholar
Wang H, Qian T, Zhao Y, Zhuo Y, Wu C, Osakada T, Chen P, Chen Z, Ren H, Yan Y et al: A tool kit of highly selective and sensitive genetically encoded neuropeptide sensors. Science 2023, 382(6672):eabq8173.
Phetsanthad A, Vu NQ, Li L: Multi-faceted mass spectrometric investigation of neuropeptides in Callinectes sapidus. J Vis Exp 2022(183).
Liu Y, Wang S, Li X, Liu Y, Zhu X. NeuroPpred-SVM: a new model for predicting neuropeptides based on embeddings of BERT. J Proteome Res. 2023;22(3):718–28.
Article PubMed CAS Google Scholar
Wang L, Zeng Z, Xue Z, Wang Y. DeepNeuropePred: a robust and universal tool to predict cleavage sites from neuropeptide precursors by protein language model. Comput Struct Biotechnol J. 2024;23:309–15.
Article PubMed CAS Google Scholar
Bin Y, Zhang W, Tang W, Dai R, Li M, Zhu Q, Xia J. Prediction of neuropeptides from sequence information using ensemble classifier and hybrid features. J Proteome Res. 2020;19(9):3732–40.
Article PubMed CAS Google Scholar
Hasan MM, Alam MA, Shoombuatong W, Deng HW, Manavalan B, Kurata H: NeuroPred-FRL: an interpretable prediction model for identifying neuropeptide using feature representation learning. Brief Bioinform 2021, 22(6).
Jiang M, Zhao B, Luo S, Wang Q, Chu Y, Chen T, Mao X, Liu Y, Wang Y, Jiang X et al: NeuroPpred-Fuse: an interpretable stacking model for prediction of neuropeptides by fusing sequence information and feature selection methods. Brief Bioinform 2021, 22(6).
Wang L, Huang C, Wang M, Xue Z, Wang Y: NeuroPred-PLM: an interpretable and robust model for neuropeptide prediction by protein language model. Brief Bioinform 2023, 24(2).
Geffen Y, Ofran Y, Unger R: DistilProtBert: a distilled protein language model used to distinguish between real proteins and their randomly shuffled counterparts. Bioinformatics 2022, 38(Suppl_2):ii95-ii98.
Elnaggar A, Heinzinger M, Dallago C, Rehawi G, Wang Y, Jones L, Gibbs T, Feher T, Angerer C, Steinegger M, et al. ProtTrans: toward understanding the language of life through self-supervised learning. IEEE Trans Pattern Anal Mach Intell. 2022;44(10):7112–27.
Hesslow D, Zanichelli N, Notin P, Poli I, Marks D: RITA: a study on scaling up generative protein sequence models. 2022.
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