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首页> 外文期刊>Journal of Integrative Bioinformatics >MIRATE: MIps RATional dEsign Science Gateway
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MIRATE: MIps RATional dEsign Science Gateway

机译:MIRATE:MIps比例设计科学网关

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pMolecularly imprinted polymers (MIPs) are high affinity robust synthetic receptors, which can be optimally synthesized and manufactured more economically than their biological equivalents (i.e. antibody). In MIPs production, rational design based on molecular modeling is a commonly employed technique. This mostly aids in (i) virtual screening of functional monomers (FMs), (ii) optimization of monomer-template ratio, and (iii) selectivity analysis. We present MIRATE, an integrated science gateway for the intelligent design of MIPs. By combining and adapting multiple state-of-the-art bioinformatics tools into automated and innovative pipelines, MIRATE guides the user through the entire process of MIPs’ design. The platform allows the user to fully customize each stage involved in the MIPs’ design, with the main goal to support the synthesis in the wet-laboratory. Availability: MIRATE is freely accessible with no login requirement at http://mirate.di.univr.it/ . All major browsers are supported.
机译:分子印迹聚合物(MIP)是高亲和力的强健合成受体,与它们的生物等效物(即抗体)相比,可以最佳地合成和更经济地生产。在MIP生产中,基于分子建模的合理设计是一种常用的技术。这主要有助于(i)虚拟筛选功能单体(FMs),(ii)优化单体模板比例和(iii)选择性分析。我们介绍MIRATE,这是用于MIP智能设计的集成科学网关。通过将多种最先进的生物信息学工具整合并改编为自动化和创新的流程,MIRATE可以指导用户完成MIP设计的整个过程。该平台允许用户完全定制MIP设计中涉及的每个阶段,其主要目标是支持湿实验室中的合成。可用性:MIRATE可免费访问,无需登录即可访问http://mirate.di.univr.it/。支持所有主要的浏览器。

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