Murakami Kazuma, Hara Hideyuki, Masuda Yuichi, Ohigashi Hajime, Irie Kazuhiro
Division of Food Science and Biotechnology, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
Chembiochem. 2007 Dec 17;8(18):2308-14. doi: 10.1002/cbic.200700240.
The neurotoxicity of the 42-mer and 40-mer amyloid beta peptides (Abeta42 and Abeta40) is closely related to the radicalization at both Tyr10 and Met35. Abeta42 is more neurotoxic than Abeta40. Our previous structural analyses of Abeta42 suggested that Tyr10 and Met35 are brought closer together by the turn at positions 22 and 23, and the S-oxidized radical cation at position 35, which is the ultimate toxic radical species, can be produced effectively through oxidation by the phenoxy radical at position 10. To verify this idea, their separation was measured by site-directed spin labeling (MTSSL) by using ESR spectroscopy. Among the three kinds of Abeta42 derivatives, which are doubly or singly spin-labeled at position 10 and 35, only 10,35-MTSSL-Abeta42 showed a clear dipole coupling in continuous-wave ESR; this suggests that the intramolecular spin labels at position 10 and 35 in Abeta42 are located within approximately 15 A. In contrast, 10,35-MTSSL-Abeta40 did not give such signals. The distance between Tyr10 and Met35 in 10,35-MTSSL-Abeta40, which was successfully measured by pulsed ESR spectroscopy was 30 A long. The difference in the distance between Abeta42 and Abeta40 could explain in part the stronger neurotoxicity of Abeta42 compared to Abeta40.
42 聚体和 40 聚体淀粉样β肽(Aβ42 和 Aβ40)的神经毒性与酪氨酸 10(Tyr10)和蛋氨酸 35(Met35)处的自由基形成密切相关。Aβ42 比 Aβ40 的神经毒性更强。我们之前对 Aβ42 的结构分析表明,Tyr10 和 Met35 通过 22 和 23 位的转角靠得更近,并且 35 位的 S - 氧化自由基阳离子(这是最终的毒性自由基种类)可以通过 10 位的苯氧基自由基氧化有效产生。为了验证这一想法,我们使用电子顺磁共振波谱(ESR)通过定点自旋标记(MTSSL)测量了它们之间的距离。在三种在 10 位和 35 位进行双自旋或单自旋标记的 Aβ42 衍生物中,只有 10,35 - MTSSL - Aβ42 在连续波 ESR 中显示出明显的偶极耦合;这表明 Aβ42 中 10 位和 35 位的分子内自旋标记位于大约 15 埃的范围内。相比之下,10,35 - MTSSL - Aβ40 没有给出这样的信号。通过脉冲 ESR 光谱成功测量的 10,35 - MTSSL - Aβ40 中 Tyr10 和 Met35 之间的距离为 30 埃。Aβ42 和 Aβ40 之间距离的差异可以部分解释 Aβ42 比 Aβ40 更强的神经毒性。