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促肾上腺皮质激素受体的放射性探针

Radioactive probes for adrenocorticotropic hormone receptors.

作者信息

Hofmann K, Romovacek H, Stehle C J, Finn F M, Bothner-By A A, Mishra P K

出版信息

Biochemistry. 1986 Mar 25;25(6):1339-46. doi: 10.1021/bi00354a023.

Abstract

Our attempts to develop adrenocorticotropic hormone (ACTH) analogues that can be employed for ACTH receptor identification and isolation began with the synthesis of ACTH fragments containing N epsilon-(dethiobiotinyl)lysine (dethiobiocytin) amide in position 25 to be used for affinity chromatographic purification of hormone-receptor complexes on Sepharose-immobilized avidin resins. Because labeling ACTH or ACTH fragments by conventional iodination techniques destroys biological activity due to oxidation of Met4 and incorporation of iodine into Tyr2, we have prepared [Phe2,Nle4]ACTH1-24, [Phe2,Nle4,biocytin25]ACTH1-25 amide, and [Phe2,Nle4,dethiobiocytin25]ACTH1-25 amide by conventional synthetic techniques. The HPLC profiles and amino acid analyses of the final products indicate that the materials are of a high degree of purity. The amount of tertiary butylation of the Trp residue in the peptides was assessed by NMR and was found to be less than 0.5%. All three peptides are equipotent with the standard ACTH1-24 as concerns their ability to stimulate steroidogenesis and cAMP formation in bovine adrenal cortical cells. Iodination of [Phe2,Nle4]ACTH1-24, with iodogen as the oxidizing agent, has been accomplished without any detectable loss of biological activity. The mono- and diiodo derivatives of [Phe2,Nle4]ACTH1-24 have been prepared, separated by HPLC, and assayed for biological activity. Both peptides have the full capacity to stimulate steroidogenesis and cAMP production in bovine adrenal cortical cells.

摘要

我们开发可用于促肾上腺皮质激素(ACTH)受体鉴定和分离的ACTH类似物的尝试,始于合成在第25位含有Nε-(去硫生物素基)赖氨酸(去硫生物胞素)酰胺的ACTH片段,用于在固定有抗生物素蛋白的琼脂糖树脂上亲和色谱纯化激素 - 受体复合物。由于用传统碘化技术标记ACTH或ACTH片段会因Met4氧化和碘掺入Tyr2而破坏生物活性,我们通过传统合成技术制备了[Phe2,Nle4]ACTH1 - 24、[Phe2,Nle4,生物胞素25]ACTH1 - 25酰胺和[Phe2,Nle4,去硫生物胞素25]ACTH1 - 25酰胺。最终产物的高效液相色谱(HPLC)图谱和氨基酸分析表明这些材料具有高度纯度。通过核磁共振(NMR)评估肽中Trp残基的叔丁基化程度,发现其小于0.5%。就刺激牛肾上腺皮质细胞中类固醇生成和环磷酸腺苷(cAMP)形成的能力而言,所有三种肽与标准ACTH1 - 24等效。以碘甘醚作为氧化剂对[Phe2,Nle4]ACTH1 - 24进行碘化,未检测到任何生物活性损失。已制备[Phe2,Nle4]ACTH1 - 24的单碘和二碘衍生物,通过HPLC分离,并测定其生物活性。这两种肽都具有充分刺激牛肾上腺皮质细胞中类固醇生成和cAMP产生的能力。

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