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在第3和6位修饰的甲状旁腺激素类似物。对肾脏和骨骼中受体结合及腺苷酸环化酶激活的影响。

Analogues of parathyroid hormone modified at positions 3 and 6. Effects on receptor binding and activation of adenylyl cyclase in kidney and bone.

作者信息

Cohen F E, Strewler G J, Bradley M S, Carlquist M, Nilsson M, Ericsson M, Ciardelli T L, Nissenson R A

机构信息

Department of Medicine, University of California, San Francisco 94143.

出版信息

J Biol Chem. 1991 Jan 25;266(3):1997-2004.

PMID:1846369
Abstract

Predictive and spectroscopic methods were used to develop a model of the structures of the 1-34 peptides of parathyroid hormone (PTH) and the PTH-related protein (PTHrP). Circular dichroism (CD) studies of bovine PTH-(1-34) and human PTHrP-(1-34)amide in the presence of trifluoroethanol suggest the presence of 24-26 alpha-helical residues. For both peptides, interactions between amino- and carboxyl-region alpha-helices are predicted to result in a hydrophobic core with externally facing hydrophilic residues that include probable determinants of receptor binding and activation. Two such residues, Ser3 and Gln6, are conserved in all known members of the PTH/PTHrP family. We have synthesized 13 novel analogues of bovine PTH-(1-34) monosubstituted at positions 3 and 6 and have determined their biological activities in renal and bone cell radioreceptor and adenylyl cyclase assays. Position 3 analogues displayed biological activity that was reduced in direct proportion to the volume of the substituent side-chain. Position 6 analogues also displayed reduced biological activity, but no simple correlation with side-chain volume or hydrophobicity was evident. The analogues fully displaced labeled PTH from binding sites in renal membranes and bone cells, but [Phe3]bPTH-(1-34), [Tyr3]bPTH-(1-34), [Phe6] bPTH-(1-34), and [Ser6]bPTH-(1-34) were only partial agonists in one or both adenylyl cyclase assays. Of these, [Phe3]bPTH-(1-34) and [Phe6]bPTH-(1-34) were tested for antagonist activity and were found to inhibit the activation of adenylyl cyclase in response to bPTH-(1-34) or hPTHrP-(1-34)amide. These results indicate that positions 3 and 6 contribute important determinants of PTH receptor binding and activation. Modification at these positions represents a novel approach to the development of antagonists of PTH action.

摘要

采用预测和光谱方法建立了甲状旁腺激素(PTH)和甲状旁腺激素相关蛋白(PTHrP)1-34肽段结构的模型。在三氟乙醇存在下对牛PTH-(1-34)和人PTHrP-(1-34)酰胺进行圆二色性(CD)研究,结果表明存在24-26个α-螺旋残基。对于这两种肽,氨基端和羧基端α-螺旋之间的相互作用预计会形成一个疏水核心,其外部为亲水性残基,其中可能包括受体结合和激活的决定因素。两个这样的残基,Ser3和Gln6,在PTH/PTHrP家族的所有已知成员中都是保守的。我们合成了13种在第3位和第6位单取代的牛PTH-(1-34)新型类似物,并在肾和骨细胞放射性受体及腺苷酸环化酶试验中测定了它们的生物学活性。第3位类似物的生物学活性与取代基侧链体积成反比降低。第6位类似物的生物学活性也降低,但与侧链体积或疏水性没有明显的简单相关性。这些类似物能完全从肾膜和骨细胞的结合位点上取代标记的PTH,但[Phe3]bPTH-(1-34)、[Tyr3]bPTH-(1-34)、[Phe6]bPTH-(1-34)和[Ser6]bPTH-(1-34)在一项或两项腺苷酸环化酶试验中只是部分激动剂。其中,[Phe3]bPTH-(1-34)和[Phe6]bPTH-(1-34)进行了拮抗剂活性测试,发现它们能抑制bPTH-(1-34)或hPTHrP-(1-34)酰胺刺激的腺苷酸环化酶激活。这些结果表明,第3位和第6位对PTH受体结合和激活起重要决定作用。在这些位置进行修饰是开发PTH作用拮抗剂的一种新方法。

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