Biotechnology Animal Division, Aquatic Biotechnology Department, CIGB, Havana 10600, Cuba.
J Endocrinol. 2012 Sep;214(3):409-19. doi: 10.1530/JOE-11-0373. Epub 2012 Jun 15.
In teleosts fish, secretion of GH is regulated by several hypothalamic factors that are influenced by the physiological state of the animal. There is an interaction between immune and endocrine systems through hormones and cytokines. GH in fish is involved in many physiological processes that are not overtly growth related, such as saltwater osmoregulation, antifreeze synthesis, and the regulation of sexual maturation and immune functions. This study was conducted to characterize a decapeptide compound A233 (GKFDLSPEHQ) designed by molecular modeling to evaluate its function as a GH secretagogue (GHS). In pituitary cell culture, the peptide A233 induces GH secretion and it is also able to increase superoxide production in tilapia head-kidney leukocyte cultures. This effect is blocked by preincubation with the GHS receptor antagonist [d-Lys(3)]-GHRP6. Immunoneutralization of GH by addition of anti-tilapia GH monoclonal antibody blocked the stimulatory effect of A233 on superoxide production. These experiments propose a GH-mediated mechanism for the action of A233. The in vivo biological action of the decapeptide was also demonstrated for growth stimulation in goldfish and tilapia larvae (P<0.001). Superoxide dismutase levels, antiprotease activity, and lectin titer were enhanced in tilapia larvae treated with this novel molecule. The decapeptide A233 designed by molecular modeling is able to function as a GHS in teleosts and enhance parameters of the innate immune system in the fish larvae.
在硬骨鱼类中,GH 的分泌受多种下丘脑因子的调节,这些因子受动物生理状态的影响。免疫和内分泌系统通过激素和细胞因子相互作用。鱼类中的 GH 参与许多与生长无关的生理过程,如海水渗透压调节、抗冻蛋白合成以及性成熟和免疫功能的调节。本研究旨在表征一种由分子建模设计的十肽化合物 A233(GKFDLSPEHQ),以评估其作为生长激素促分泌素(GHS)的功能。在垂体细胞培养中,该肽 A233 诱导 GH 分泌,并且还能够增加罗非鱼头肾白细胞培养物中超氧化物的产生。这种作用可被 GHS 受体拮抗剂 [d-Lys(3)]-GHRP6 预先孵育阻断。通过添加抗罗非鱼 GH 单克隆抗体对 GH 进行免疫中和,阻断了 A233 对超氧化物产生的刺激作用。这些实验提出了 A233 作用的 GH 介导机制。该十肽在金鱼和罗非鱼幼虫中的生长刺激中的体内生物学作用也得到了证明(P<0.001)。用这种新分子处理的罗非鱼幼虫中超氧化物歧化酶水平、抗蛋白酶活性和凝集素滴度均升高。通过分子建模设计的十肽 A233 能够在硬骨鱼中作为 GHS 发挥作用,并增强鱼类幼虫固有免疫系统的参数。