首页> 美国卫生研究院文献>other >Conjugation of Methotrexate-Amino Derivatives to Macromolecules through Carboxylate Moieties Is Superior Over Conventional Linkage to Amino Residues: Chemical Cell-Free and In Vitro Characterizations
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Conjugation of Methotrexate-Amino Derivatives to Macromolecules through Carboxylate Moieties Is Superior Over Conventional Linkage to Amino Residues: Chemical Cell-Free and In Vitro Characterizations

机译:甲氨蝶呤-氨基衍生物通过羧酸基团与大分子的结合优于常规的与氨基残基的键合:化学无细胞和体外表征

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摘要

In this study, we examined the possibility of introducing methotrexate (MTX) to the carboxylate rather than to the ε-amino side chains of proteins. We found that MTX—amino compounds covalently linked to the carboxylate moieties of macromolecules, undergo unusual peptide-bond cleavage, with the release of the MTX amino derivatives from the conjugates. This event takes place at an accelerated rate under acidic conditions, and at a slower rate at physiological pH values. The glutamate portion of MTX is responsible for this behavior, with little or no contribution of the p-aminobenzoate-pteridine ring that is linked to the α-amino side chain of the glutamate. Carboxylate-linked Fmoc-Glu-γ-CONH-(CH2)6-NH2 undergoes hydrolysis in a nearly indistinguishable fashion. A free α carboxylate moiety is essential for this effect. Carboxylate linked Fmoc-glutamic-amide-γ-CONH-(CH2)6-NH2 undergoes no hydrolysis under acidic conditions. Based on these findings, we engineered a cysteine specific MTX containing reagent. Its linkage to bovine serum albumin (BSA) yielded a conjugate with profound antiproliferative efficacy in a MTX-sensitive glioma cell line. In conclusion, carboxylate linked MTX-amino derivatives in particular, and carboxylate linked R-α-GLU-γ amino compounds in general are equipped with‘built-in chemical machinery’ that releases them under mild acidic conditions.
机译:在这项研究中,我们研究了将甲氨蝶呤(MTX)引入到羧酸盐而不是蛋白质的ε-氨基侧链的可能性。我们发现,MTX-氨基化合物与大分子的羧基部分共价连接,会经历不寻常的肽键裂解,并从结合物中释放MTX氨基衍生物。此事件在酸性条件下以加速的速率发生,而在生理pH值下以较慢的速率发生。 MTX的谷氨酸部分是这种行为的原因,与谷氨酸的α-氨基侧链连接的对氨基苯甲酸酯-蝶啶环几乎没有贡献。与羧酸盐连接的Fmoc-Glu-γ-CONH-(CH2)6-NH2几乎以不可区分的方式进行水解。游离的α羧酸根部分对于这种作用至关重要。与羧酸盐连接的Fmoc-谷氨酸酰胺-γ-CONH-(CH2)6-NH2在酸性条件下不发生水解。基于这些发现,我们设计了一种含有半胱氨酸特异性MTX的试剂。它与牛血清白蛋白(BSA)的连接产生了一种偶联物,在MTX敏感的神经胶质瘤细胞系中具有强大的抗增殖功效。总而言之,特别是羧酸盐连接的MTX-氨基衍生物和羧酸盐连接的R-α-GLU-γ氨基化合物一般都配备有“内置化学机械”,可在弱酸性条件下释放它们。

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