Growth Hormone Endocrinology of Salmonids: Regulatory Mechanisms and Mode of Action

被引:0
作者
Björn Thrandur Björnsson
Viktoria Johansson
Susana Benedet
Ingibjörg Eir Einarsdottir
Jon Hildahl
Thorleifur Agustsson
Elisabeth Jönsson
机构
[1] Göteborg University,Fish Endocrinology Laboratory, Department of Zoology/Zoophysiology
来源
Fish Physiology and Biochemistry | 2002年 / 27卷
关键词
growth hormone; GH; insulin-like growth factor I; IGF-I; regulation; secretion; clearance; GH-receptor; GHR; GH-binding-proteins; GHBP; review;
D O I
暂无
中图分类号
学科分类号
摘要
The focus of this review is on the regulatory mechanisms and the mode of action of GH in salmonids. To stimulate further research, it aims at highlighting areas where numerous important breakthroughs have recently been made, as well as where data are currently lacking. The regulation of GH secretion is under complex hypothalamic control, as well as under negative feedback control by GH and IGF-I. Further, the recently characterized ghrelin is a potent GH secretagogue, and may prove to be a link between feed intake and growth regulation. GH plasma profiles show indications of diurnal changes, but whether salmonids have true pulsatile GH secretion remains to be elucidated. The recent cloning and characterization of the salmon GH receptor (GHR) is a major research break-through which will give new insights into the mechanisms of GH action. It should also stimulate research into circulating GH-binding proteins (GHBPs), as they appear to be a soluble form of the GHR. The salmonid GHR sequences show evolutionary divergence from other fish species, but with a high degree of identity within the salmonid group. Radioreceptorassay studies have found GHR present in all tissues examined, which is in line with the highly pleiotropic action of GH. Data are currently scarce on the plasma dynamics of GH in salmonids, and further studies on GHR and GHBPs dynamics coupled to assessments of GH clearance rates and pathways are needed. The direct versus indirect nature of GH action remains to be clarified, but GH appears to act both locally at the target tissue level to stimulate the autocrine/paracrine action of IGF-I, as well as on the liver to increase plasma IGF-I levels. In addition, GH interacts with other hormones such as cortisol, thyroid hormones, insulin, and reproductive hormones, generating a wide range of physiological effects. GH may act both peripherally and directly at the level of the central nervous system to modify behavior, probably by altering the dopaminergic activity in the brain.
引用
收藏
页码:227 / 242
页数:15
相关论文
共 621 条
[91]  
Hansen T.(2000)Peptide purification, cDNA and genomic DNA cloning, and functional characterization of ghrelin in rainbow trout Am. J. Physiol. 278 1352-135
[92]  
Stefansson S.O.(1998)Identification of insulin-like growth factor-binding proteins in the circulation of four teleost fish species Aquaculture 168 221-3560
[93]  
Haux C.(2002)Ghrelin is a growth-hormone-releasing acylated peptide from stomach J. Exp. Biol. 205 3553-615
[94]  
Blaise O.(2001)Growth hormone (GH), GH receptor and signal transduction J. Fish Biol. 59 605-442
[95]  
Le Bail P.Y.(1985)Characterization of putative growth hormone receptors in human choroid plexus Gen. Comp. Endocrinol. 58 436-14
[96]  
Weil C.(1992)Development and validation of a highly sensitive radioimmunoassay for chinook salmon ( Horm. Metabolic Res. 24 10-234
[97]  
Blaise O.(1998)) growth hormone Physiol. Behav. 64 227-219
[98]  
Weil C.(2001)Growth hormone (GH) and reproduction: a review Comp. Biochem. Physiol. B 129 207-167
[99]  
Le Bail P.Y.(1995)Evidence for binding and action of growth hormone in trout testis Growth Regul. 5 164-161
[100]  
Bolton J.P.(1994)Insulin-like growth factor (IGF-I) mRNA and IGF-I receptor in trout testis and in isolated spermatogenic and Sertoli cells Gen. Comp. Endocrinol. 96 149-128