Medicinal Chemistry and Chemical Biology, Utrecht Institute for Pharmaceutical Sciences, Department of Pharmaceutical Sciences, Faculty of Science, Utrecht University, PO Box 80082, 3508, TB, Utrecht, The Netherlands.
J Pept Sci. 2013 Nov;19(11):692-9. doi: 10.1002/psc.2551. Epub 2013 Sep 11.
Herein, we describe a scalable purification of the lantibiotic nisin via an extraction/precipitation approach using a biphasic system, which can be carried out up to 40-80 gram scale. This approach results in an at least tenfold enrichment of commercially available preparations of nisin, which usually contain only 2.5% of the desired peptide, to allow further purification by preparative HPLC. As a follow-up study, the enriched nisin sample was digested either by trypsin or chymotrypsin, or treated by CNBr, and these reactions were monitored by LC-MS to identify and characterize the obtained fragments. Two previously unknown cleavage sites have been identified: Asn20-Met21 and Met21-Lys22 for trypsin and chymotrypsin, respectively. Furthermore, a novel and convenient enzymatic approach to isolate the native nisin C-ring [nisin fragment (13-20)] was uncovered. Finally, by means of preparative HPLC, nisin fragments (1-12), (1-20), (22-34), and (22-31) could be isolated and will be used in a semi-synthesis approach to elucidate the role of each fragment in the mode of action of nisin as an antimicrobial peptide.
在此,我们描述了一种通过两相系统的提取/沉淀方法对乳链菌肽进行可扩展纯化的方法,该方法可在 40-80 克规模上进行。这种方法可将市售的乳链菌肽制剂至少富集十倍,这些制剂通常只含有所需肽的 2.5%,从而可以通过制备型 HPLC 进一步纯化。作为后续研究,用胰蛋白酶或糜蛋白酶对富集的乳链菌肽样品进行消化,或用 CNBr 处理,并用 LC-MS 监测这些反应,以鉴定和表征得到的片段。鉴定出两个以前未知的切割位点:胰蛋白酶和糜蛋白酶分别为 Asn20-Met21 和 Met21-Lys22。此外,还发现了一种新的、方便的酶法来分离天然乳链菌肽 C 环[乳链菌肽片段(13-20)]。最后,通过制备型 HPLC 可以分离出乳链菌肽片段(1-12)、(1-20)、(22-34)和(22-31),并将其用于半合成方法中,以阐明每个片段在乳链菌肽作为抗菌肽的作用模式中的作用。