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首页> 外文期刊>Journal of proteomics >The pivotal role of reactivity in the design of novel biotinylation reagents for the chemical-proteomics-based identification of vascular accessible biomarkers
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The pivotal role of reactivity in the design of novel biotinylation reagents for the chemical-proteomics-based identification of vascular accessible biomarkers

机译:反应性在新型生物素化试剂设计中的关键作用,基于化学蛋白质组学的血管可利用生物标记物鉴定

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摘要

A promising approach for the development of novel therapeutics with fewer side effects in healthy tissues is the targeted delivery of bioactive molecules directly to the site of disease. Thus, one prerequisite is the identification of a robust, disease-specific, vascular accessible biomarker localized on the surface of diseased cells, in the surrounding extracellular matrix or on newly formed blood vessels. One avenue towards the identification of such biomarkers consists in the enrichment of the vascular accessible surface proteome fraction prior to analysis. This can be achieved by covalent modification of the target proteins with membrane-impermeable ester derivatives of biotin, followed by streptavidin-based affinity capturing. The properties of the respective reagents are determined by the linker between the biotin moiety and the reactive group for protein coupling. In the frame of this study, novel, reactivity-improved peptide-based biotinylation reagents as well as reagents based on highly hydrophilic heparin linkers were synthesized and validated. The comprehensive evaluation of different biotinylation reagent classes with aliphatic, PEGylated, peptide-based and heparin-based linkers on single model protein BSA, HeLa cells as well as perfused kidney tissue revealed that the linker-dependent chemical reactivity is the crucial factor for the design of novel biotinylation reagents for vascular targeting approaches.
机译:用于开发在健康组织中具有较少副作用的新型疗法的一种有前途的方法是将生物活性分子直接递送至疾病部位。因此,一个先决条件是鉴定位于患病细胞表面,周围细胞外基质中或新形成的血管上的健壮的,特定于疾病的,可进入血管的生物标记。鉴定此类生物标志物的一种途径是在分析之前富集血管可及的表面蛋白质组部分。这可以通过用生物素的不可渗透膜的酯衍生物对目标蛋白进行共价修饰,然后进行基于链霉亲和素的亲和捕获来实现。各个试剂的性质由生物素部分和蛋白质偶联反应性基团之间的接头决定。在本研究的框架内,合成并验证了新型的,反应性得到改进的基于肽的生物素化试剂以及基于高度亲水性肝素接头的试剂。在单个模型蛋白BSA,HeLa细胞以及灌注的肾脏组织上使用脂肪族,聚乙二醇化,基于肽和基于肝素的接头对不同生物素化试剂类别进行的全面评估表明,接头依赖的化学反应性是设计的关键因素用于血管靶向方法的新型生物素化试剂的开发。

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