| Literature DB >> 32477601 |
A V Kutina1, A A Makashov1, E V Balbotkina1, T A Karavashkina1, Yu V Natochin1.
Abstract
The nonapeptides of neurohypophysis, vasotocin and mesotocin, detected in most vertebrates, are replaced by vasopressin and oxytocin in mammals. Using bioinformatics methods, we determined the spectrum of receptor subtypes for these hormones in mammals and their physiological effects in the kidneys of rats. A search for sequences similar to the vertebrate vasotocin receptor by proteomes and transcriptomas of nine mammalian species and the rat genome revealed three subtypes of vasopressin receptors (V1a, V1b, and V2) and one type of oxytocin receptors. In the kidneys of non-anesthetized rats, which received a water load of 2 ml per 100 g of body weight, three effects of vasopressin were revealed: 1) increased reabsorption of water and sodium, 2) increased excretion of potassium ions, and 3) increased excretion of sodium ions. It has been suggested that each of the effects on the kidney is associated with selective stimulation of the vasopressin receptor subtypes V2, V1b, and V1a depending on the concentration of nonapeptide. In experiments on non-anaesthetized rats with a water load, the injection of oxytocin reduces the reabsorption of solute-free water in the kidneys and increases the excretion of sodium ions. The possible physiological mechanisms behind the realization of both effects with the participation of a single type of oxytocin receptors are being analyzed. Thus, the spectrum of activated receptor subtypes varies depending on the current concentration of neurohypophyseal hormones, as a result of which the predominant effect on renal function changes, which ensures precise regulation of water-salt homeostasis. Copyright ® 2020 National Research University Higher School of Economics.Entities:
Keywords: bioinformatics; ion excretion; kidney; receptors; vasopressin; water reabsorption
Year: 2020 PMID: 32477601 PMCID: PMC7245957 DOI: 10.32607/actanaturae.10943
Source DB: PubMed Journal: Acta Naturae ISSN: 2075-8251 Impact factor: 1.845
List of the versions of proteomes, transcriptomes, and genomes used
| Species | Version |
|---|---|
| Homo sapiens | GRCh38.p12 |
| Pan troglodytes | Clint_PTRv2 |
| Pongo abelii | Susie_PABv2 |
| Nomascus leucogenys | Nleu_3.0 |
| Canis lupus familiaris | CanFam3.1 |
| Rattus norvegicus | Rnor_6.0 |
| Mus musculus | GRCm38.p6 |
| Monodelphis domestica | MonDom5 |
| Ornithorhynchus anatinus | Ornithorhynchus_anatinus-5.0.1 |
Identifiers of mRNA nucleotide sequences and amino acid sequences of mammalian receptor proteins similar to the vertebrate vasotocin receptor
| Species | Proteins | mRNA | Designation on the phylograms |
|---|---|---|---|
| Homo sapiens | NP_000697.1 | NM_000706.4 | Avpr1a_Homo |
| NP_000698.1 | NM_000707.4 | Avpr1b_Homo | |
| NP_000907.2 | NM_000916.3 | Oxtr_Homo | |
| NP_000045. | NM_000054.1 | Avpr2_Homo4 | |
| NP_997055.1 | NM_207172.1 | Npsr1A_Homo | |
| NP_001287864.1 | NM_001300933.1 | Npsr1G_Homo | |
| NP_997056.1 | NM_207173.1 | Npsr1B_Homo | |
| NP_000397.1 | NM_000406.2 | Gnrhr_Homo | |
| Pan troglodytes | XP_016778615.1 | XM_016923126.2 | Avpr1a_Pan |
| XP_525039.2 | XM_525039.6 | Avpr1b_Pan | |
| XP_001144020.1 | XM_001144020.5 | Oxtr_Pan | |
| XP_001145732.2 | XM_009439827.2 | Avpr2_Pan | |
| XP_024213409.1 | XM_024357641.1 | Npsr1_Pan | |
| XP_526608.1 | XM_526608.5 | Gnrhr_Pan | |
| Pongo abelii | XP_002823515.2 | XM_002823469.3 | Avpr1a_Pongo |
| XP_002813528.1 | XM_002813482.3 | Oxtr_Pongo | |
| XP_024089895.1 | XM_024234127.1 | Avpr1b_Pongo | |
| XP_024096521.1 | XM_024240753.1 | Avpr2_Pongo | |
| XP_002818110.2 | XM_002818064.3 | Npsr1_Pongo | |
| XP_024101999.1 | XM_024246231.1 | Gnrhr_Pongo | |
| Nomascus leucogenys | XP_003252777.1* | XM_003252729.3 | Avpr1a_NLeu |
| XP_003272998.1 | XM_003272950.3 | Avpr1b_NLeu | |
| XP_012357682.1 | XM_012502228.1 | Oxtr_NLeu | |
| XP_003279348.1 | XM_003279300.2 | Avpr2_NLeu | |
| XP_003279243.1 | XM_003279195.2 | Npsr1_NLeu | |
| XP_003268473.1 | XM_003268425.1 | Gnrhr_NLeu | |
| Canis lupus familiaris | NP_001185587.1 | NM_001198658.1 | Avpr1a_Canis |
| NP_001185588.1 | NM_001198659.1 | Oxtr_Canis | |
| XP_545695.2 | XM_545695.3 | Avpr1b_Canis | |
| NP_001003177.1 | NM_001003177.1 | Avpr2_Canis | |
| XP_022283280.1 | XM_022427572.1 | Npsr1_Canis | |
| NP_001003121.1 | NM_001003121.1 | Gnrhr_Canis | |
| Rattus norvegicus | NP_444178.2 | NM_053019.2 | Avpr1a_Rat |
| NP_058901.3 | NM_017205.3 | Avpr1b_Rat | |
| NP_001276729.1 | NM_001289800.1 | Avpr1b_Rat | |
| NP_037003.2 | NM_012871.3 | Oxtr_Rat | |
| NP_062009.1 | NM_019136.1 | Avpr2_Rat | |
| NP_001100278.1 | NM_001106808.1 | Npsr1_Rat | |
| NP_112300.2 | NM_031038.3 | Gnrhr_Rat | |
| Mus musculus | NP_058543.2 | NM_016847.2 | Avpr1a_Mus |
| NP_036054.1 | NM_011924.2 | Avpr1b_Mus | |
| NP_001074616.1 | NM_001081147.1 | Oxtr_Mus | |
| NP_062277.1 | NM_019404.2 | Avpr2_Mus | |
| NP_783609.1 | NM_175678.3 | Npsr1_Mus | |
| NP_034453.1 | NM_010323.2 | Gnrhr_Mus | |
| Monodelphis domestica | XP_001372716.1 | XM_001372679.3 | Avpr1a_MonDom |
| XP_001372263.1 | XM_001372226.2 | Avpr1b_MonDom | |
| XP_016279957.1 | XM_016424471.1 | Oxtr_MonDom | |
| XP_001365641.2 | XM_001365604.4 | Npsr1_MonDom | |
| XP_001362289.1 | XM_001362252.2 | Gnrhr_MonDom | |
| Ornithorhynchus anatinus | XP_001520677.1 | XM_001520627.2 | Avpr1a_OrnAnat |
| XP_007660695.1 | XM_007662505.1 | Oxtr_OrnAnat | |
| XP_007663815.1 | XM_001520222.2 | Avpr2_OrnAnat | |
| XP_007658276.1* | XM_007660086.1 | Avpr1b_OrnAnat | |
| XP_016082441.1*,# | XM_016226955.1 | Npsr1_OrnAnat | |
| NP_001116830.1 | NM_001123358.1 | Gnrhr_OrnAnat |
Note:
*– incomplete sequence,
#– not found during automatic search, added manually from the NCBI database.
Results of the search for genes similar to the nucleotide sequence of the vasotocin receptor in the genome of the rat (Rattus norvegicus)
| Score | Chromosome (strand) | Start and end of gene (b.p.) | Transcript ID | Protein ID | Protein length (a.a.) |
|---|---|---|---|---|---|
| Avpr1a (gene ID ENSRNOG00000004400) | |||||
| 852.5 | 7(–) | 67341080-67345308 |
ENSRNOT |
ENSRNOP | 424 |
| LOC100909648 (gene ID ENSRNOG00000049261) | |||||
| 500.8 | 13(–) | 48390417-48400632 |
ENSRNOT |
ENSRNOP | 421 |
| Avpr1b (gene ID ENSRNOG00000048522) | |||||
| 500.5 | 13(+) | 48367307-48378831 |
ENSRNOT |
ENSRNOP | 421 |
| Oxtr (gene ID ENSRNOG00000005806) | |||||
| 464.3 | 4(–) | 144403358-144416116 |
ENSRNOT |
ENSRNOP | 388 |
| Avpr2 (gene ID ENSRNOG00000059862) | |||||
| 238.2 | X(–) | 156889410-156891213 |
ENSRNOT |
ENSRNOP | 371 |