Literature DB >> 7589552

Molecular and functional characterization of a partial cDNA encoding a novel chicken brain melatonin receptor.

F Liu1, H Yuan, K S Sugamori, A Hamadanizadeh, F J Lee, S F Pang, G M Brown, Z B Pristupa, H B Niznik.   

Abstract

An approach based on homology probing was used to clone a partial cDNA encoding a novel melatonin (ML) receptor (MLR) from chicken (Gallus domesticus) brain. Based on available deduced amino-acid sequence, the chicken MLR (cMLR) displayed greater sequence homology to the frog (Xenopus) MLR than cloned human/mammalian receptors, with overall identities of 73% and 66%, respectively. In order to gain functional expression, a chimeric frog/chicken (flc)MLR was constructed in which the 5' end of the cMLR, including the N-terminus, TM1 and part of the first intracellular loop was substituted by fMLR sequence. [125I]Iodo-ML bound with high affinity (Kd of approximately 35 pM) to COS-7 cells transiently expressing the flcMLR in a saturable and guanine nucleotide-sensitive manner with the following rank order of potency: 2-iodo-ML > ML > 6-Cl-ML > S20750 > 6-OH-ML > S20642 > S20753 > N-acetyl-5HT >> 5-HT. Estimated Ki values for these compounds at the flcMLR correlated well to those obtained in native chicken brain membranes. In line with the observed structural similarity to the fMLR, the flcMLR exhibited affinities for ML, 6-Cl-ML and 6-OH-ML approximately 10-fold lower than mammalian receptors. Functionally, opposing interactions between ML and dopamine receptor signal transduction pathways were observed with ML potently inhibiting dopamine D1A-receptor-mediated cAMP accumulation in cells (HEK-293) transiently co-expressing these receptors. cMLR mRNAs were found expressed in chicken brain and kidney with trace levels observed in the lung. The availability of cloned vertebrate MLRs distinct at both the amino acid and pharmacological level from their mammalian counterparts may now allow for the identification of those amino-acid residues and structural motifs that regulate ML-binding specificity and affinity.

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Year:  1995        PMID: 7589552     DOI: 10.1016/0014-5793(95)01129-3

Source DB:  PubMed          Journal:  FEBS Lett        ISSN: 0014-5793            Impact factor:   4.124


  5 in total

1.  Regulation of dopamine D1 receptor function by physical interaction with the NMDA receptors.

Authors:  Lin Pei; Frank J S Lee; Anna Moszczynska; Brian Vukusic; Fang Liu
Journal:  J Neurosci       Date:  2004-02-04       Impact factor: 6.167

2.  Analogues of diverse structure are unable to differentiate native melatonin receptors in the chicken retina, sheep pars tuberalis and Xenopus melanophores.

Authors:  H Pickering; S Sword; S Vonhoff; R Jones; D Sugden
Journal:  Br J Pharmacol       Date:  1996-09       Impact factor: 8.739

Review 3.  Avian circadian organization: a chorus of clocks.

Authors:  Vincent M Cassone
Journal:  Front Neuroendocrinol       Date:  2013-10-21       Impact factor: 8.606

4.  Melatonin induces the expression of gonadotropin-inhibitory hormone in the avian brain.

Authors:  Takayoshi Ubuka; George E Bentley; Kazuyoshi Ukena; John C Wingfield; Kazuyoshi Tsutsui
Journal:  Proc Natl Acad Sci U S A       Date:  2005-02-11       Impact factor: 11.205

5.  Melatonin mediates monochromatic light-induced proliferation of T/B lymphocytes in the spleen via the membrane receptor or nuclear receptor.

Authors:  Juanjuan Xiong; Zixu Wang; Jing Cao; Yulan Dong; Yaoxing Chen
Journal:  Poult Sci       Date:  2020-06-24       Impact factor: 3.352

  5 in total

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