Enjalbert A, Epelbaum J, Arancibia S, Tapia-Arancibia L, Bluet-Pajot M T, Kordon C
Endocrinology. 1982 Jul;111(1):42-7. doi: 10.1210/endo-111-1-42.
Reciprocal interactions of somatostatin (SRIF) and vasoactive intestinal peptide (VIP) or TRH on in vitro PRL and GH release from male rats hemipituitaries were investigated. SRIF did not modify basal PRL release, but TRH- or VIP-induced release was inhibited by SRIF in a dose-dependent manner [effective concentration-fifty (EC50) = 1.7 +/- 0.9 nM for SRIF inhibition of TRH stimulation and EC50 = 0.8 +/- 0.5 nM for SRIF inhibition of VIP stimulation]. VIP and TRH did not affect GH release by themselves, but reduced the inhibition of GH secretion elicited by SRIF (EC50 = 7.6 +/- 3.4 nM for TRH blockade of SRIF inhibition and EC50 = 4.6 +/- 3.1 nM for VIP blockade of SRIF inhibition). Secretin, a partial structural analog of VIP, also blocked SRIF-induced inhibition of GH and stimulated PRL release. Secretin stimulation of PRL release was also prevented by SRIF. [D-Trp8,D-Cys14]SRIF, a potent analog of SRIF, antagonized VIP stimulation of PRL secretion with the same apparent affinity as the native peptide. The maximal stimulation, but not the apparent affinity of VIP action on prolactin release was reduced by SRIF, suggesting that the interaction is of a noncompetitive nature. This conclusion as further substantiated by the observation that neither TRH nor VIP were able to displace specific 125I-labeled [Tyr1] SRIF high affinity binding to pituitary membranes. The three peptides tested thus appear to exhibit reciprocal interactions mediated by independent receptor sites on GH as well as on PRL-producing cells.
研究了生长抑素(SRIF)与血管活性肠肽(VIP)或促甲状腺激素释放激素(TRH)对雄性大鼠半垂体体外催乳素(PRL)和生长激素(GH)释放的相互作用。SRIF不改变基础PRL释放,但SRIF以剂量依赖方式抑制TRH或VIP诱导的释放[SRIF抑制TRH刺激的半数有效浓度(EC50)=1.7±0.9 nM,SRIF抑制VIP刺激的EC50=0.8±0.5 nM]。VIP和TRH自身不影响GH释放,但可减轻SRIF对GH分泌的抑制作用(TRH阻断SRIF抑制的EC50=7.6±3.4 nM,VIP阻断SRIF抑制的EC50=4.6±3.1 nM)。促胰液素是VIP的部分结构类似物,也可阻断SRIF诱导的GH抑制并刺激PRL释放。SRIF也可阻止促胰液素对PRL释放的刺激。[D-色氨酸8,D-半胱氨酸14]SRIF是SRIF的强效类似物,以与天然肽相同的表观亲和力拮抗VIP对PRL分泌的刺激。SRIF降低了VIP对催乳素释放的最大刺激,但不影响其表观亲和力,表明这种相互作用是非竞争性的。TRH和VIP均不能取代特异性125I标记的[酪氨酸1]SRIF与垂体膜的高亲和力结合,这一观察结果进一步证实了这一结论。因此,所测试的这三种肽似乎表现出由GH以及PRL分泌细胞上独立受体位点介导的相互作用。