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基于促卵泡激素受体识别位点三维模型的合成肽在低浓度下表现出拮抗或激动活性。

Synthetic peptides based upon a three-dimensional model for the receptor recognition site of follicle-stimulating hormone exhibit antagonistic or agonistic activity at low concentrations.

作者信息

Hage-van Noort M, Puijk W C, Plasman H H, Kuperus D, Schaaper W M, Beekman N J, Grootegoed J A, Meloen R H

机构信息

Central Veterinary Institute, Lelystad, The Netherlands.

出版信息

Proc Natl Acad Sci U S A. 1992 May 1;89(9):3922-6. doi: 10.1073/pnas.89.9.3922.

Abstract

Follicle-stimulating hormone (follitropin, FSH) belongs to a group of closely related glycoprotein hormones that contain two noncovalently linked dissimilar subunits designated alpha and beta. By using synthetic peptides, several receptor interaction sites in these hormones have been identified; however, the peptides have a reduced potency (lowest effective concentration of 10(-4) to 10(-5) M) relative to the hormone itself (10(-8) to 10(-11) M). This suggests that the peptides represent only a portion of a larger recognition site in the intact hormone that comprises parts of both the beta and the alpha chains. To develop peptides that exhibit FSH-antagonistic activity at low concentrations, we have constructed a three-dimensional model for FSH, which is based on an alignment of both the beta and the alpha chains of glycoprotein hormones with thioredoxin, for which x-ray diffraction data are available. This model resulted in the prediction of a conformational receptor-binding site in FSH, in which (parts of) three earlier proposed binding regions on the FSH molecule [namely, the regions FSH alpha-(34-37), with the amino acid sequence SRAY; FSH beta-(40-43), with the amino acid sequence TRDL; and FSH beta-(87-94), the "determinant loop" with the amino acid sequence CDSDSTDC] are located within 10 A of one another. On the basis of this model, peptides have been synthesized in which two of these binding regions are linked by a synthetic amino acid whose length was derived from the model, Ac-TDSDS-NH-(CH2)5-CO-SRAY-NH2 and Ac-SRAY-NH-(CH2)4-CO-TRDL-NH2. Both peptides inhibited FSH-induced cAMP production in Sertoli cells at 1000-fold lower concentrations (10(-7) M) than the peptides Ac-TRDL-NH2, Ac-SRAY-NH2, or Ac-TDSDS-NH2. In another peptide, Ac-TDSDS-NH-(CH2)5-CO-SRAY-NH-(CH2)4-CO-TRDL-NH2, all three binding regions have been linked. This peptide appeared to be a strong agonist of FSH action, as measured by the ability to stimulate cAMP production, at concentrations as low as 10(-7) M. The observation that a synthetic peptide, in which (parts of) three earlier described receptor interaction sites are combined according to the three-dimensional model, can mimic the action of FSH, at 10(-7) M, shows that this model is useful to predict a conformational receptor-binding site in FSH and that combination of only a few amino acid residues from the alpha and beta chains of FSH in a small synthetic peptide is sufficient to transduce a signal upon binding to the receptor.

摘要

促卵泡激素(促滤泡素,FSH)属于一组密切相关的糖蛋白激素,其包含两个非共价连接的不同亚基,分别称为α和β。通过使用合成肽,已在这些激素中鉴定出几个受体相互作用位点;然而,相对于激素本身(10⁻⁸至10⁻¹¹M),这些肽的效力降低(最低有效浓度为10⁻⁴至10⁻⁵M)。这表明这些肽仅代表完整激素中较大识别位点的一部分,该识别位点包括β链和α链的部分。为了开发在低浓度下表现出FSH拮抗活性的肽,我们构建了FSH的三维模型,该模型基于糖蛋白激素的β链和α链与硫氧还蛋白的比对,硫氧还蛋白有可用的X射线衍射数据。该模型预测了FSH中的一个构象受体结合位点,其中FSH分子上先前提出的三个结合区域(即区域FSHα-(34 - 37),氨基酸序列为SRAY;FSHβ-(40 - 43),氨基酸序列为TRDL;以及FSHβ-(87 - 94),“决定簇环”,氨基酸序列为CDSDSTDC)的(部分)彼此位于10埃之内。基于该模型,合成了肽,其中这些结合区域中的两个通过从模型中得出长度的合成氨基酸连接,Ac - TDSDS - NH - (CH₂)₅ - CO - SRAY - NH₂和Ac - SRAY - NH - (CH₂)₄ - CO - TRDL - NH₂。与肽Ac - TRDL - NH₂、Ac - SRAY - NH₂或Ac - TDSDS - NH₂相比,这两种肽在1000倍低的浓度(10⁻⁷M)下抑制了支持细胞中FSH诱导的cAMP产生。在另一种肽Ac - TDSDS - NH - (CH₂)₅ - CO - SRAY - NH - (CH₂)₄ - CO - TRDL - NH₂中,所有三个结合区域都已连接。通过刺激cAMP产生的能力测量,该肽在低至10⁻⁷M的浓度下似乎是FSH作用的强激动剂。观察到根据三维模型组合三个先前描述的受体相互作用位点(部分)的合成肽在10⁻⁷M时可以模拟FSH的作用,表明该模型可用于预测FSH中的构象受体结合位点,并且在小的合成肽中仅组合FSH的α链和β链的几个氨基酸残基就足以在与受体结合时转导信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd22/525603/fcab5a4ed2d3/pnas01083-0265-a.jpg

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