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Facile and Stabile Linkages through Tyrosine: Bioconjugation Strategies with the Tyrosine-Click Reaction

机译:通过酪氨酸的容易和稳定的链接:酪氨酸点击反应的生物共轭策略。

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摘要

The scope, chemoselectivity, and utility of the click-like tyrosine labeling reaction with 4-phenyl-3H-1,2,4-triazoline-3,5(4H)-diones (PTADs) is reported. To study the utility and chemoselectivity of PTAD derivatives in peptide and protein chemistry, we synthesized PTAD derivatives possessing azide, alkyne, and ketone groups and studied their reactions with amino acid derivatives and peptides of increasing complexity. With proteins we studied the compatibility of the tyrosine click reaction with cysteine and lysine-targeted labeling approaches and demonstrate that chemoselective tri-functionalization of proteins is readily achieved. In particular cases, we noted PTAD decomposition resulted in formation of a putative isocyanate by-product that was promiscuous in labeling. This side reaction product, however, was readily scavenged by the addition of a small amount of 2-amino-2-hydroxymethyl-propane-1,3-diol (Tris) to the reaction medium. To study the potential of the tyrosine click reaction to introduce poly(ethylene) glycol chains onto proteins (PEGylation), we demonstrate that this novel reagent provides for the selective PEGylation of chymotrypsinogen whereas traditional succinimide-based PEGylation targeting lysine residues provided a more diverse range of PEGylated products. Finally, we applied the tyrosine click reaction to create a novel antibody drug conjugate. For this purpose, we synthesized a PTAD derivative linked to the HIV entry inhibitor aplaviroc. Labeling of the antibody trastuzumab with this reagent provided a labeled antibody conjugate that demonstrated potent HIV-1 neutralization activity demonstrating the potential of this reaction in creating protein conjugates with small molecules. The tyrosine click linkage demonstrated stability to extremes of pH, temperature and exposure to human blood plasma indicating that this linkage is significantly more robust than maleimide-type linkages that are commonly employed in bioconjugations. These studies support the broad utility of this reaction in the chemoselective modification of small molecules, peptides, and proteins under mild aqueous conditions over a broad pH range using a wide variety of biologically acceptable buffers such as phosphate buffered saline (PBS) and 2-amino-2-hydroxymethyl-propane-1,3-diol (Tris) buffers as well as others and mixed buffered compositions.
机译:报道了与4-苯基-3H-1,2,4-三唑啉-3,5(4H)-二酮(PTADs)的点击样酪氨酸标记反应的范围,化学选择性和实用性。为了研究PTAD衍生物在肽和蛋白质化学中的效用和化学选择性,我们合成了具有叠氮化物,炔烃和酮基的PTAD衍生物,并研究了它们与氨基酸衍生物和复杂度不断增加的肽的反应。对于蛋白质,我们研究了酪氨酸点击反应与半胱氨酸和赖氨酸靶向标记方法的相容性,并证明了蛋白质的化学选择性三官能化很容易实现。在特定情况下,我们注意到PTAD分解会导致在标签上混杂的推定的异氰酸酯副产物的形成。然而,通过向反应介质中添加少量的2-氨基-2-羟甲基丙烷-1,3-二醇(Tris),可以容易地清除该副反应产物。为了研究酪氨酸点击反应将聚乙二醇链引入蛋白质上的潜力(聚乙二醇化),我们证明了这种新型试剂可对糜蛋白酶进行选择性聚乙二醇化,而针对靶向赖氨酸残基的传统基于琥珀酰亚胺的聚乙二醇化提供了更广泛的范围聚乙二醇化产品。最后,我们应用酪氨酸点击反应来创建新型抗体药物偶联物。为此,我们合成了与HIV进入抑制剂aplaviroc连接的PTAD衍生物。用该试剂对曲妥珠单抗进行标记提供了一种标记的抗体偶联物,该抗体偶联物显示出强大的HIV-1中和活性,证明了该反应在创建小分子蛋白质偶联物中的潜力。酪氨酸咔嗒键显示出对极端pH,温度和暴露于人血浆的稳定性,表明该键比生物共轭中通常使用的马来酰亚胺型键明显更坚固。这些研究支持该反应在温和的水性条件下,在宽pH范围内,使用多种生物学上可接受的缓冲液(如磷酸盐缓冲液(PBS)和2-氨基)对小分子,肽和蛋白质进行化学选择性修饰的广泛用途。 -2-羟甲基丙烷-1,3-二醇(Tris)缓冲液以及其他缓冲液和混合缓冲液组合物。

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