Laakkonen L, Li W, Perlman J H, Guarnieri F, Osman R, Moeller K D, Gershengorn M C
Department of Physiology and Biophysics, Mount Sinai School of Medicine, City University of New York, New York 10029, USA.
Mol Pharmacol. 1996 Jun;49(6):1092-6.
Thyrotropin-releasing hormone (TRH) is a tripeptide (< Glu-His-Pro-NH2) that signals through a G protein-coupled receptor. TRH is a highly flexible molecule that can assume many conformations in solution. To attempt to delineate the biologically active conformation of TRH, we synthesized a pair of conformationally restricted cyclohexyl/Ala2-TRH analogues. The diastereomeric analogues use a lactam ring to restrict two of the six free torsional angles of TRH and constrain the X-Pro-NH2 peptide bond to trans. Unrestricted cyclohexyl/Ala2-TRH exhibited a 650-fold lower affinity than TRH for TRH receptor and was 430-fold less potent than TRH in stimulating inositol phosphate second messenger formation. One diastereomer exhibited higher affinity and potency than the unrestricted analogue despite the presence of the methylene bridge and fused ring, whereas the other showed lower affinity and potency. Computer simulations predicted that the positions of the cyclohexyl/Ala2 and Pro-NH2 moieties relative to < glutamate were different in the two analogues and that the conformation of the higher affinity analogue is different from that of trans-TRH in solution but is superimposable on that of trans-TRH found in a model of the TRH/TRH receptor complex. These experimental findings identify a favored relative position of < glutamate and Pro-NH2 in the more active conformation of two diastereomeric analogues of TRH and provide independent support for the model of the TRH/TRH receptor complex.
促甲状腺激素释放激素(TRH)是一种三肽(<Glu-His-Pro-NH2),通过G蛋白偶联受体发出信号。TRH是一种高度灵活的分子,在溶液中可呈现多种构象。为了试图描绘TRH的生物活性构象,我们合成了一对构象受限的环己基/Ala2-TRH类似物。非对映体类似物使用内酰胺环来限制TRH六个自由扭转角中的两个,并将X-Pro-NH2肽键限制为反式。未受限的环己基/Ala2-TRH对TRH受体的亲和力比TRH低650倍,在刺激肌醇磷酸第二信使形成方面的效力比TRH低430倍。尽管存在亚甲基桥和稠环,但一种非对映体的亲和力和效力比未受限的类似物更高,而另一种则显示出较低的亲和力和效力。计算机模拟预测,在这两种类似物中,环己基/Ala2和Pro-NH2部分相对于<谷氨酸的位置不同,且高亲和力类似物的构象与溶液中的反式TRH不同,但与TRH/TRH受体复合物模型中发现的反式TRH的构象重叠。这些实验结果确定了TRH两种非对映体类似物更具活性构象中<谷氨酸和Pro-NH2的有利相对位置,并为TRH/TRH受体复合物模型提供了独立支持。