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125I标记的交联剂,具有亲水性、可光活化且可通过偶氮键裂解。

125I-labeled crosslinking reagent that is hydrophilic, photoactivatable, and cleavable through an azo linkage.

作者信息

Denny J B, Blobel G

出版信息

Proc Natl Acad Sci U S A. 1984 Sep;81(17):5286-90. doi: 10.1073/pnas.81.17.5286.

Abstract

A radioactive crosslinking reagent, N-[4-(p-azido-m-[125I]iodophenylazo)benzoyl]-3-aminopropyl-N' -oxysulfosuccinimide ester, has been synthesized. The reagent is photoactivatable, water-soluble, cleavable through an azo linkage, and labeled with 125I at the carrier-free specific activity of 2000 Ci/mmol. Any protein derivatized with the reagent is thus converted into an 125I-labeled photoaffinity probe. Crosslinks are formed following photolysis with 366-nm light, and cleavage by sodium dithionite results in the donation of radioactivity to the distal partner in crosslinked complexes. The newly labeled proteins are then analyzed by gel electrophoresis and autoradiography. The compound was prepared by iodination of N-[4-(p-aminophenylazo)benzoyl]-3-aminopropionic acid using carrier-free Na125I and chloramine-T, followed by azide formation and conversion to the water-soluble sulfosuccinimide ester. As a model system, protein A-Sepharose was derivatized with the reagent under subdued light. Each derivatized protein A molecule contained only one crosslinker. The derivatized protein A-Sepharose was then photolyzed in the presence of human serum and subsequently treated with sodium dithionite. Analysis of the serum by gel electrophoresis revealed that 1.1% of the radioactive label originally present on the protein A-Sepharose was transferred to the heavy chain of IgG, which was the most intensely labeled protein in the gel. The next most intensely labeled protein was IgG light chain, which incorporated radioactivity that was lower by a factor of 3.6 than that of the heavy chain. These results demonstrated the specificity of the derivatized protein A-Sepharose as a photoaffinity probe. Photolabeling of IgG was the result of nitrene-mediated reactions and was not due to the incorporation of free 125I.

摘要

已合成一种放射性交联试剂,即N-[4-(对叠氮基-间-[¹²⁵I]碘苯基偶氮)苯甲酰基]-3-氨丙基-N'-氧代磺基琥珀酰亚胺酯。该试剂可光活化、水溶性、可通过偶氮键裂解,并以无载体比活度2000 Ci/mmol标记有¹²⁵I。因此,用该试剂衍生化的任何蛋白质都可转化为¹²⁵I标记的光亲和探针。用366 nm光进行光解后形成交联,连二亚硫酸钠裂解导致交联复合物中放射性转移至远端结合物。然后通过凝胶电泳和放射自显影分析新标记的蛋白质。该化合物通过使用无载体Na¹²⁵I和氯胺-T对N-[4-(对氨基苯基偶氮)苯甲酰基]-3-氨基丙酸进行碘化制备,随后形成叠氮化物并转化为水溶性磺基琥珀酰亚胺酯。作为模型系统,在弱光下用该试剂对蛋白A-琼脂糖进行衍生化。每个衍生化的蛋白A分子仅含有一个交联剂。然后在人血清存在下对衍生化的蛋白A-琼脂糖进行光解,随后用连二亚硫酸钠处理。通过凝胶电泳分析血清发现,最初存在于蛋白A-琼脂糖上的放射性标记有¹¹%转移至IgG重链,其是凝胶中标记最强烈的蛋白质。下一个标记最强烈的蛋白质是IgG轻链,其掺入的放射性比重链低3.6倍。这些结果证明了衍生化的蛋白A-琼脂糖作为光亲和探针的特异性。IgG的光标记是氮烯介导反应的结果,并非由于游离¹²⁵I的掺入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7531/391688/6e91a04f8981/pnas00618-0015-a.jpg

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