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通过光亲和标记鉴定垂体生长激素释放肽(GHRP)受体亚型。

Identification of a pituitary growth hormone-releasing peptide (GHRP) receptor subtype by photoaffinity labeling.

作者信息

Ong H, McNicoll N, Escher E, Collu R, Deghenghi R, Locatelli V, Ghigo E, Muccioli G, Boghen M, Nilsson M

机构信息

Faculty of Pharmacy, University of Montréal, Canada.

出版信息

Endocrinology. 1998 Jan;139(1):432-5. doi: 10.1210/endo.139.1.5811.

Abstract

Hexarelin, an analogue of GHRP-6, in which D-Tryptophan has been replaced by its 2-methyl derivative, is known to release growth hormone (GH) in vivo and in vitro by direct action on receptors present in anterior pituitary cells. Measurement of second messengers (c-AMP, Ca++, IP3) upon somatotrophs stimulation, suggests the existence of more than one GHRP receptor subtype. In order to document such an hypothesis, we have used a new photoactivatable derivative of Hexarelin, Tyr-Bpa-Ala-Hexarelin. This derivative was shown to be fully active in the release of GH in vivo with neonate rats. Using this photoactivatable ligand, we have specifically labeled a protein with an apparent Mr of 57,000 in human, bovine and porcine anterior pituitary membranes. Hexarelin and the spiroindoline sulfonamide MK-0677 displaced the Mr-57,000 photolabeled band with an apparent ED50 of 6x10(-7) M and 2x10(-5) M respectively. Taking into account the high efficiency (>60%) of covalent incorporation of the Bpa residue, this photoactivatable Hexarelin derivative has allowed the identification of a pituitary GHRP receptor subtype, which is apparently distinct from the recently cloned GH secretagogue receptor.

摘要

六肽生长激素释放肽(Hexarelin)是生长激素释放肽-6(GHRP-6)的类似物,其中D-色氨酸已被其2-甲基衍生物取代,已知它通过直接作用于垂体前叶细胞中的受体在体内和体外释放生长激素(GH)。对促生长激素细胞刺激后第二信使(c-AMP、Ca++、IP3)的测量表明,存在不止一种GHRP受体亚型。为了证明这一假设,我们使用了一种新的六肽生长激素释放肽的光活化衍生物,即酪氨酸-对溴苯丙氨酸-丙氨酸-六肽生长激素释放肽(Tyr-Bpa-Ala-Hexarelin)。该衍生物在新生大鼠体内释放GH方面显示出完全活性。使用这种光活化配体,我们在人、牛和猪的垂体前叶膜中特异性标记了一种表观分子量为57,000的蛋白质。六肽生长激素释放肽和螺吲哚啉磺酰胺MK-0677分别以6×10(-7)M和2×10(-5)M的表观半数有效剂量(ED50)取代了分子量为57,000的光标记带。考虑到对溴苯丙氨酸(Bpa)残基的共价掺入效率很高(>60%),这种光活化的六肽生长激素释放肽衍生物已能够鉴定出一种垂体GHRP受体亚型,它显然不同于最近克隆的生长激素促分泌素受体。

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