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Research Article

GPR39-1b, the 5-transmembrane isoform of GPR39 interacts with neurotensin receptor NTSR1 and modifies its function

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Pages 307-312 | Received 26 Nov 2013, Accepted 15 Jan 2014, Published online: 11 Feb 2014

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Rodrigo Romero-Nava, De-Shan Zhou, Noemí García, Armando Ruiz-Hernández, Yin-Chu Si, Fausto Sánchez-Muñoz, Fengyang Huang, Enrique Hong & Santiago Villafaña. (2017) Evidence of alterations in the expression of orphan receptors GPR26 and GPR39 due to the etiology of the metabolic syndrome. Journal of Receptors and Signal Transduction 37:4, pages 422-429.
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Articles from other publishers (6)

Bin Cao, Jue Wang & Juan Feng. (2023) Signaling pathway mechanisms of neurological diseases induced by G protein‐coupled receptor 39. CNS Neuroscience & Therapeutics 29:6, pages 1470-1483.
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Pengpeng Xia, Li Yan, Xingduo Ji, Yunping Wu, Siqi Lian & Guoqiang Zhu. (2022) Functions of the Zinc-Sensing Receptor GPR39 in Regulating Intestinal Health in Animals. International Journal of Molecular Sciences 23:20, pages 12133.
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Yifan Xu, Anthony P. Barnes & Nabil J. Alkayed. (2021) Role of GPR39 in Neurovascular Homeostasis and Disease. International Journal of Molecular Sciences 22:15, pages 8200.
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Anna Laitakari, Lingzhi Liu, Thomas M. Frimurer & Birgitte Holst. (2021) The Zinc-Sensing Receptor GPR39 in Physiology and as a Pharmacological Target. International Journal of Molecular Sciences 22:8, pages 3872.
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Michal Rychlik & Katarzyna Mlyniec. (2019) Zinc-mediated Neurotransmission in Alzheimer's Disease: A Potential Role of the GPR39 in Dementia. Current Neuropharmacology 18:1, pages 2-13.
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Merc? Tena-Campos, Eva Ramon, Dasiel O. Borroto-Escuela, Kjell Fuxe & Pere Garriga. (2015) The zinc binding receptor GPR39 interacts with 5-HT1A and GalR1 to form dynamic heteroreceptor complexes with signaling diversity. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 1852:12, pages 2585-2592.
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