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Associating a negatively charged GdDOTA-derivative to the Pittsburgh compound B for targeting Aβ amyloid aggregates Topical Issue in Honor of R.J.P. Williams

机译:将带有负电荷的GdDOTA衍生物与匹兹堡化合物B结合以靶向Aβ淀粉样蛋白聚集体以纪念R.J.P.威廉姆斯

摘要

We have conjugated the tetraazacyclododecane-tetraacetate (DOTA) chelator to Pittsburgh compound B (PiB) forming negatively charged lanthanide complexes, Ln(L), with targeting capabilities towards aggregated amyloid peptides. The amphiphilic Gd(L) chelate undergoes micellar aggregation in aqueous solution, with a critical micellar concentration of 0.68 mM, lower than those for the neutral complexes of similar structure. A variable temperature O NMR and NMRD study allowed the assessment of the water exchange rate, k = 9.7 × 10 s, about the double of GdDOTA, and for the description of the rotational dynamics for both the monomeric and the micellar forms of Gd(L). With respect to the analogous neutral complexes, the negative charge induces a significant rigidity of the micelles formed, which is reflected by slower and more restricted local motion of the Gd centers as evidenced by higher relaxivities at 20-60 MHz. Surface Plasmon Resonance results indicate that the charge does not affect significantly the binding strength to Aβ [K = 194 ± 11 μM for La(L)], but it does enhance the affinity constant to human serum albumin [K = 6530 ± 68 M for Gd(L)], as compared to neutral counterparts. Protein-based NMR points to interaction of Gd(L) with Aβ in the monomer state as well, in contrast to neutral complexes interacting only with the aggregated form. Circular dichroism spectroscopy monitored time- and temperature-dependent changes of the Aβ secondary structure, indicating that Gd(L) stabilizes the random coil relative to the α-helix and β-sheet. TEM images confirm that the Gd(L) complex reduces the formation of aggregated fibrils. Graphical Abstract: [Figure not available: see fulltext.]
机译:我们已经将四氮杂十二烷基四乙酸酯(DOTA)螯合剂缀合到匹兹堡化合物B(PiB),形成带负电荷的镧系元素络合物Ln(L),并具有针对聚集的淀粉样肽的靶向能力。两亲性Gd(L)螯合物在水溶液中经历胶束聚集,临界胶束浓度为0.68 mM,低于类似结构的中性复合物的胶束浓度。可变温度O NMR和NMRD研究允许评估水交换速率k = 9.7×10 s,约为GdDOTA的两倍,并用于描述Gd(L)的单体形式和胶束形式的旋转动力学)。对于类似的中性络合物,负电荷诱导形成的胶束具有显着的刚度,这可以通过Gd中心的更慢和更受限制的局部运动来反映,如在20-60 MHz处更高的弛豫度所证明的。表面等离振子共振结果表明,电荷不会显着影响与Aβ的结合强度[La(L)的K = 194±11μM],但会增强对人血清白蛋白的亲和常数[K = 6530±68 M Gd(L)],与中性对应物相比。与仅与聚集形式相互作用的中性复合物相反,基于蛋白质的NMR也指向Gd(L)与处于单体状态的Aβ相互作用。圆二色性光谱监测了Aβ二级结构随时间和温度的变化,表明Gd(L)使相对于α-螺旋和β-折叠的随机线圈稳定。 TEM图像证实Gd(L)配合物减少了聚集的原纤维的形成。图形摘要:[该图不可用:请参见全文。]

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