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首页> 外文期刊>Biochemistry >p-(4-Hydroxybenzoyl)phenylalanine: a photoreactive amino acid analog amenable to radioiodination for elucidation of peptide-protein interaction. Application to substance P receptor.
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p-(4-Hydroxybenzoyl)phenylalanine: a photoreactive amino acid analog amenable to radioiodination for elucidation of peptide-protein interaction. Application to substance P receptor.

机译:对-(4-羟基苯甲酰基)苯丙氨酸:一种光反应性氨基酸类似物,适于放射碘化以阐明肽-蛋白质相互作用。应用于P物质受体。

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摘要

Benzoylphenylalanine, a photoreactive phenylalanine analog that can be incorporated into a peptide during solid-phase synthesis, is a useful probe for investigating the interactions of bioactive peptides with their receptors. This probe, however, lacks versatility because it is not detectable by Edman sequencing and because it cannot be labeled with radioiodine, requiring radiolabeling of the peptide ligand at a site distal to the photoreactive amino acid. The separation of the radioisotope and photoaffinity labels along the primary sequence limits identification of the photoinsertion site to a peptide fragment rather than a specific amino acid of the receptor protein. We have now synthesized p-(4-hydroxybenzoyl)phenylalanine by a synthetic route involving reaction of 4-(chloromethyl)benzoic anhydride with phenol in polyphosphoric acid to give the 4-(chloromethyl)benzoyl ester of 4-(chloromethyl)-4'-hydroxybenzophenone followed by reaction of the benzophenone derivative with ethyl acetamidocyanoacetateand subsequent hydrolysis of the product to give p-(4-hydroxybenzoyl)phenylalanine. The novel photolabile amino acid was incorporated into substance P (replacing Phe8 or Lys3) to give 11-mer peptides that bind with high (nM) affinity and specificity to the substance P receptor. Radioiodination of the substance P analogs resulted in the incorporation of 125I at the photoreactive amino acid residue, yielding probes of high (approximately 2000 Ci/mmol) specific activity. Subsequent photolysis of the radiolabeled peptides in the presence of substance P receptor caused covalent attachment of the peptide to the receptor with high photoinsertion yield (approximately 30%); photolabeling was abolished in the presence of excess unlabeled SP. p-(4-Hydroxybenzoyl)phenylalanine retains p-benzoylphenylalanine's high insertion yield and low reactivity with water, but in contrast allows placement of radioiodine and the photoactive moieties within the same residue, providing the ability to identify the specific site(s) of interaction, and identification of the residue by Edman sequencing. This novel amino acid may be useful in the elucidation of the interaction of a variety of peptides with their receptors.
机译:苯甲酰基苯丙氨酸是一种光反应性苯丙氨酸类似物,可在固相合成过程中掺入肽中,是研究生物活性肽与其受体相互作用的有用探针。但是,该探针缺乏通用性,因为它无法通过埃德曼测序检测到,并且无法用放射性碘标记,因此需要在光反应性氨基酸远端的位置对肽配体进行放射性标记。沿主要序列的放射性同位素和光亲和标记的分离将光插入位点的鉴定限制在肽片段而不是受体蛋白的特定氨基酸上。我们现在已经通过一种合成路线合成了对-(4-羟基苯甲酰基)苯丙氨酸,该路线涉及4-(氯甲基)苯甲酸酐与苯酚在多磷酸中的反应,从而得到4-(氯甲基)-4'的4-(氯甲基)苯甲酸酯。 -羟基二苯甲酮,然后使二苯甲酮衍生物与乙酰氨基氰基乙酸乙酯反应,然后将产物水解,得到对-(4-羟基苯甲酰基)苯丙氨酸。将新的对光不稳定的氨基酸掺入P物质中(取代Phe8或Lys3),以生成11-mer肽,该肽与P物质受体具有高(nM)亲和力和特异性。 P物质类似物的放射性碘化导致在光反应性氨基酸残基处掺入125 I,从而产生了高(约2000 Ci / mmol)比活的探针。放射性标记的肽在物质P受体存在下的后续光解导致该肽以高光插入产率(约30%)共价附于受体。在存在过量的未标记SP的情况下取消了光标记。对-(4-羟基苯甲酰基)苯丙氨酸保留了对苯甲酰基苯丙氨酸的高插入产率和与水的低反应性,但是相反,它允许在同一残基中放置放射性碘和光敏部分,从而能够识别相互作用的特定部位,并通过Edman测序鉴定残基。这种新氨基酸可用于阐明各种肽与其受体的相互作用。

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