Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, USA.
Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, Troy, NY, USA.
Int J Nanomedicine. 2018 Sep 7;13:5249-5253. doi: 10.2147/IJN.S174673. eCollection 2018.
We are interested in designing a modular strategy for creating potent multivalent ligands, which frequently can be used as effective inhibitors of undesired biomolecular interactions. For example, such inhibitors might prevent the self-assembly of bacterial toxins or the attachment of a virus to its host cell receptors.
We used a biocompatible polyamino acid polymer as a scaffold for grafting multiple copies of an oligonucleotide aptamer (OA). Specifically, the carboxylates on the side chains of polyglutamic acid (PGA) were modified with a thiol-reactive linker, -aminoethyl maleimide (AEM), and thiol-functionalized OAs were attached to the maleimide moieties. The resulting conjugates were tested for their ability to compete with and inhibit the binding of unconjugated monovalent OAs to the target cell receptor.
Multivalent PGA-OA conjugates with low, medium, and high valency were successfully prepared. The varying valency and successful purification to remove unconjugated OAs were confirmed by polyacrylamide gel electrophoresis. The resulting purified conjugates inhibited the binding of unconjugated monovalent OAs, and the measured half maximal inhibitory concentration (IC) values corresponded to a 38-88-fold enhancement of potency on a per-aptamer basis, relative to OA alone.
Multivalent conjugation of OA ligands has potential as a generally useful way to improve the potency of the interaction between the ligand and its target receptor. We have demonstrated this principle with a known OA as a proof of concept as well a synthetic strategy that can be used to synthesize multivalent conjugates of other OAs.
我们有兴趣设计一种模块化策略来构建强效的多价配体,这些配体通常可以用作抑制不良生物分子相互作用的有效抑制剂。例如,此类抑制剂可能会阻止细菌毒素的自组装或病毒与其宿主细胞受体的附着。
我们使用生物相容性的聚氨基酸聚合物作为支架,用于接枝多个寡核苷酸适体 (OA) 的拷贝。具体而言,聚谷氨酸 (PGA) 侧链上的羧酸基被巯基反应性连接子 - 氨乙基马来酰亚胺 (AEM) 修饰,然后将巯基化的 OA 连接到马来酰亚胺部分。测试所得缀合物与未缀合的单价 OA 竞争并抑制其与靶细胞受体结合的能力。
成功制备了具有低、中、高价的多价 PGA-OA 缀合物。通过聚丙烯酰胺凝胶电泳证实了不同的价态和成功的纯化以去除未缀合的 OA。所得纯化缀合物抑制了未缀合的单价 OA 的结合,并且所测量的半最大抑制浓度 (IC) 值相对于单独的 OA 而言,在每个适体的基础上提高了 38-88 倍的效力。
OA 配体的多价缀合具有作为提高配体与其靶受体之间相互作用效力的一般有用方法的潜力。我们已经用已知的 OA 作为概念验证以及可以用于合成其他 OA 的多价缀合物的合成策略证明了这一原理。