研究 Boc-Trp-Pro-Pro-Trp、Trp-Pro-Pro-Trp 和氘化水之间同位素交换的活化过程

IF 0.9 Q4 CHEMISTRY, INORGANIC & NUCLEAR Radiochemistry Pub Date : 2024-07-16 DOI:10.1134/S1066362224030123
V. P. Shevchenko, K. V. Shevchenko, I. Yu. Nagaev, L. A. Andreeva
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引用次数: 0

摘要

摘要 在5% Pd/Al2O3催化剂存在下,通过与D2O进行同位素交换,开发了将氘引入Trp-Pro-Pro-Trp和Boc-Trp-Pro-Pro-Trp的条件。引入氘后,Trp-Pro-Pro-Trp 的热稳定性明显低于 Boc 保护肽。氘化 Trp-Pro-Pro-Trp 的产率不超过 10-15%,125°C 时氘的加入量约为 0.9-1.1 at./分子。在 150°C 时,Boc-Trp-Pro-Pro-Trp 可以引入氘,氘含量增加到 3.75 at./分子。研究发现,分子中色氨酸片段的氘含量约为脯氨酸片段的 2 倍。研究发现,用氘气预处理 Boc-Trp-Pro-Pro-Trp 不仅能激活同位素交换,还能促进 Boc 保护的消除。获得的数据表明,出现这种现象的原因与催化剂在 Boc-Trp-Pro-Pro-Trp 分子上生成氘阳离子有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Study of the Activation Process of Isotope Exchange between Boc-Trp-Pro-Pro-Trp, Trp-Pro-Pro-Trp and Deuterated Water

The conditions for introducing deuterium into Trp-Pro-Pro-Trp and Boc-Trp-Pro-Pro-Trp by isotope exchange with D2O in the presence of a 5% Pd/Al2O3 catalyst were developed. The thermal stability of Trp-Pro-Pro-Trp upon introduction of deuterium was significantly lower than that of the Boc-protected peptide. The yield of deuterated Trp-Pro-Pro-Trp did not exceed 10–15%, and the inclusion of deuterium was about 0.9–1.1 at./molecule at 125°C. The introduction of deuterium into Boc-Trp-Pro-Pro-Trp was possible at 150°C, which increased the deuterium content to 3.75 at./molecule. It was found that the tryptophan fragment of the molecule contains approximately 2 times more deuterium than the proline fragment. It was found that pretreatment of Boc-Trp-Pro-Pro-Trp with deuterium gas not only activates isotope exchange, but also promotes the removal of Boc protection. The data obtained indicate that the reason for this phenomenon is associated with the generation of deuterium cations on Boc-Trp-Pro-Pro-Trp molecules by the catalyst.

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来源期刊
Radiochemistry
Radiochemistry CHEMISTRY, INORGANIC & NUCLEAR-
CiteScore
1.30
自引率
33.30%
发文量
51
期刊介绍: Radiochemistry  is a journal that covers the theoretical and applied aspects of radiochemistry, including basic nuclear physical properties of radionuclides; chemistry of radioactive elements and their compounds; the occurrence and behavior of natural and artificial radionuclides in the environment; nuclear fuel cycle; radiochemical analysis methods and devices; production and isolation of radionuclides, synthesis of labeled compounds, new applications of radioactive tracers; radiochemical aspects of nuclear medicine; radiation chemistry and after-effects of nuclear transformations.
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