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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Influence of the metal complex-to-peptide linker on the synthesis and properties of bioactive CpMn(CO)(3) peptide conjugates
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Influence of the metal complex-to-peptide linker on the synthesis and properties of bioactive CpMn(CO)(3) peptide conjugates

机译:金属络合物-肽接头对生物活性CpMn(CO)(3)肽偶联物的合成和性质的影响

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By combining organometallic groups and peptides, a large number of conjugates with interesting new biological properties can be prepared. Especially, attachment to cell-penetrating peptides (CPP) that act as efficient cell delivery vehicles has come to the fore. However, the presence of the metal moiety in such systems can interfere with standard conjugate synthesis procedures which therefore need to be optimized for every new compound. In this work, we report on the preparation of six new cymantrene-sC18 peptide bioconjugates that were prepared by solid phase peptide synthesis ( SPPS) techniques. The cymantrene complexes were chosen for their different linker to the peptide, to study the influence of the linker group on cellular uptake and cell viability of the conjugates. Interestingly, the attachment of the metal complex leads to a non-standard cleavage of the Rink amide linker used in the SPPS protocol under trifluoroacetic acid (TFA) treatment, resulting in peptide amides that are N-alkylated at the C-terminus. Furthermore, we found that depending on the type of cymantrene moiety attached, the formation of reactive carbocations which result from decomposition of the resin linker is facilitated and can alkylate the metal complex moiety. Both effects were analyzed by MS/MS studies and cleavage mixtures for efficient elimination of this byproduct formation were identified. Moreover, initial biological testing of the cytotoxicity of one of the bioconjugates gave promising results. Concentration-dependent cell viability studies of Cym1-sC18 on human MCF-7 breast adenocarcinoma cells gave an IC50 value of 59.8 (+/- 6.7) mu M and demonstrate their potential in anticancer chemotherapy.
机译:通过结合有机金属基团和肽,可以制备大量具有令人感兴趣的新生物学特性的缀合物。特别地,与作为有效细胞递送载体的细胞穿透肽(CPP)的结合已成为人们关注的焦点。但是,这种系统中金属部分的存在会干扰标准的共轭合成过程,因此需要针对每种新化合物进行优化。在这项工作中,我们报告了通过固相肽合成(SPPS)技术制备的六个新的Cymantrene-sC18肽生物缀合物的制备。选择cymantrene复合物是因为它们与肽具有不同的接头,以研究接头基团对缀合物的细胞摄取和细胞活力的影响。有趣的是,金属络合物的附着导致三氟乙酸(TFA)处理下SPPS规程中使用的Rink酰胺连接基的非标准裂解,从而导致肽酰胺在C端被N烷基化。此外,我们发现,取决于所连接的环丙三烯部分的类型,由树脂接头的分解导致的反应性碳正离子的形成被促进并且可以使金属络合物部分烷基化。通过MS / MS研究分析了两种作用,并鉴定了有效消除这种副产物形成的裂解混合物。而且,对一种生物缀合物的细胞毒性的初步生物学测试给出了有希望的结果。 Cym1-sC18对人MCF-7乳腺腺癌细胞的浓度依赖性细胞生存力研究得出的IC50值为59.8(+/- 6.7)μM,并证明了其在抗癌化学疗法中的潜力。

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