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Hinge peptide combinatorial libraries for inhibitors of botulinum neurotoxins and saxitoxin: Deconvolution strategy

机译:肉毒杆菌神经毒素和沙门毒素抑制剂的铰链肽组合文库:解卷积策略

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Combinatorial library screening offers a rapid process for identifying potential therapies to toxins. Hinge peptide libraries, which rely oil conformational diversity rather than traditional molecular diversity, reduce the need for huge numbers of syntheses and screening steps and greatly expedite the discovery process of active molecules. Hinge peptide libraries having the structures: Acetyl-X-1-X-2-hinge-X-3-X-4-NH2 (capped) and X-1-hinge-X-2-X-3 (uncapped), where X-1 through X-4 are near-equimolar mixtures of twelve L-amino acids and hinge = 4-aminobutyric acid, were screened for inhibitory activity in bioassays for botulinum neurotoxins A and B (BoNT/A, BoNT/B) and saxitoxin. The zinc protease activity of the reduced light chains of BoNT/A and /B was assayed by measuring the cleavage of synthetic substrates. Saxitoxin activity was measured by the restoration of the viability of neuroblastoma cells treated with ouabain and veratridine. Deconvolution of libraries was accomplished by fixing one position at a time beginning with the C-terminus. Primary library subsets in which position 4 was fixed showed moderate levels of inhibition for BoNT/A. Secondary library subsets showed stronger inhibition in the bioassays. In each of the bioassays, inhibitory potency was stronger when the second position to be fixed was oil the opposite side of the hinge, rather than on the same side with respect to the C-terminus, suggesting that the hinge facilitates the interaction of side chains. Inhibitors for all three of the toxins studied were discovered within library subsets, although not necessarily in primary subsets. These studies demonstrate that (1) the best strategy for deconvoluting hinge peptide libraries is by fixing residues alternately on each side of the hinge moiety, and (2) it is essential to investigate secondary subsets even when primary subsets are inactive. The present findings support the concept that the increased flexibility imposed by the inclusion of a central hinge residue in small peptides increases the opportunity for side chain interactions, providing a distinct advantage for hinge peptide libraries over conventional peptide libraries. Hinge peptide libraries are a rich source of novel ligands for modulation of biomechanisms. The library subsets uncovered in this study may possess peptides that will lead to effective therapies to neurotoxin poisoning.
机译:组合文库筛选提供了一种快速的方法来鉴定毒素的潜在疗法。依赖于油构象多样性而不是传统分子多样性的铰链肽库减少了对大量合成和筛选步骤的需求,并大大加快了活性分子的发现过程。具有以下结构的铰链肽库:乙酰基-X-1-X-2-铰链-X-3-X-4-NH2(加帽)和X-1-铰链-X-2-X-3(无盖),其中X-1至X-4是十二种L-氨基酸和铰链= 4-氨基丁酸的近等摩尔混合物,在生物测定中针对肉毒杆菌神经毒素A和B(BoNT / A,BoNT / B)和毒素的抑制活性进行了筛选。通过测量合成底物的裂解来测定BoNT / A和/ B的还原轻链的锌蛋白酶活性。通过用哇巴因和维拉替丁处理的神经母细胞瘤细胞的活力恢复来测定毒素的活性。库的反卷积是通过从C末端开始一次固定一个位置来完成的。固定位置4的初级文库子集显示出对BoNT / A的中等抑制水平。二级文库亚组在生物测定中显示出较强的抑制作用。在每种生物测定中,当要固定的第二个位置在铰链的相反侧而不是相对于C端位于同一侧时,抑制力都更强,这表明铰链促进了侧链的相互作用。在文库亚组中发现了所研究的所有三种毒素的抑制剂,尽管不一定在主要亚组中发现。这些研究表明(1)去除铰链肽文库卷积的最佳策略是通过在铰链部分的每一侧交替固定残基,并且(2)即使次要子集不活跃,研究次要子集也是必不可少的。本发明发现支持这样的概念,即在小肽中包含中央铰链残基所带来的增加的柔韧性增加了侧链相互作用的机会,从而为铰链肽文库提供了优于常规肽文库的明显优势。铰链肽库是用于调节生物力学的新型配体的丰富来源。在这项研究中发现的文库亚组可能具有将导致有效治疗神经毒素中毒的肽。

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