Faculty of Life Sciences, IGM, Section for Bioorganic Chemistry, University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg C, Denmark.
J Pept Sci. 2010 Sep;16(9):506-12. doi: 10.1002/psc.1269.
Precise microwave heating has emerged as a valuable method to aid solid-phase peptide synthesis (SPPS). New methods and reliable protocols, as well as their embodiment in automated instruments, are required to fully use this potential. Here we describe a new automated robotic instrument for SPPS with microwave heating, report protocols for its reliable use and report the application to the synthesis of long sequences, including the beta-amyloid 1-42 peptide. The instrument is built around a valve-free robot originally developed for parallel peptide synthesis, where the robotic arm transports reagents instead of pumping reagents via valves. This is the first example of an 'X-Y' robotic microwave-assisted synthesizer developed for the assembly of long peptides. Although the instrument maintains its capability for parallel synthesis at room temperature, in this paper, we focus on sequential peptide synthesis with microwave heating. With this valve-free instrument and the protocols developed for its use, fast and efficient syntheses of long and difficult peptide sequences were achieved.
精确的微波加热已经成为辅助固相多肽合成(SPPS)的一种有价值的方法。需要新的方法和可靠的方案,以及将其应用于自动化仪器中,才能充分发挥这种潜力。在这里,我们描述了一种新的自动化机器人仪器,用于带有微波加热的 SPPS,报告了其可靠使用的方案,并报告了其在长序列合成中的应用,包括β-淀粉样蛋白 1-42 肽。该仪器是围绕最初为并行肽合成开发的无阀机器人构建的,其中机械臂运输试剂而不是通过阀门泵送试剂。这是第一个为组装长肽而开发的“X-Y”型机器人微波辅助合成器的示例。尽管该仪器保持了其在室温下进行并行合成的能力,但在本文中,我们专注于具有微波加热的顺序多肽合成。使用这种无阀仪器和开发的使用方案,可以快速有效地合成长而困难的肽序列。