Jeanne Dit Fouque Kevin, Hegemann Julian D, Zirah Séverine, Rebuffat Sylvie, Lescop Ewen, Fernandez-Lima Francisco
Department of Chemistry and Biochemistry, Florida International University, 11200 SW 8th St., AHC4-233, Miami, FL, 33199, USA.
M Department of Chemistry, University of Illinois, Urbana-Champaign, IL, 61801, USA.
J Am Soc Mass Spectrom. 2019 Jun;30(6):1038-1045. doi: 10.1007/s13361-019-02134-5. Epub 2019 Mar 4.
Microcin J25 is a ribosomal synthesized and post-translationally modified peptide (RiPP) characterized by a mechanically interlocked topology called the lasso fold. This structure provides microcin J25 a potent antimicrobial activity resulting from internalization via the siderophore receptor FhuA and further inhibition of the RNA polymerase. In the present work, nuclear magnetic resonance (NMR) and trapped ion mobility spectrometry-mass spectrometry (TIMS-MS) were used to investigate the lasso structure of microcin J25. NMR experiments showed that the lasso peptide microcin J25 can adopt conformational states where Pro16 can be found in the cis- and trans-orientations. The high-resolution mobility analysis, aided by site-directed mutagenesis ([P7A], [P16A], and [P7A/P16A] variants), demonstrated that microcin J25 can adopt cis/cis-, cis/trans-, trans/cis-, and trans/trans-conformations at the Pro7 and Pro16 peptide bonds. It was also shown that interconversion between the conformers can occur as a function of the starting solvent conditions and ion heating (collision-induced activation, CIA) despite the lasso topology. Complementary to NMR findings, the cis-conformations at Pro7 were assigned using TIMS-MS. This study highlights the analytical power of TIMS-MS and site-directed mutagenesis for the study of biological systems with large micro-heterogeneity as a way to further increase our understanding of the receptor-binding dynamics and biological activity.
微菌素J25是一种核糖体合成并经翻译后修饰的肽(RiPP),其特征在于具有一种称为套索折叠的机械互锁拓扑结构。这种结构赋予微菌素J25强大的抗菌活性,该活性源于通过铁载体受体FhuA内化并进一步抑制RNA聚合酶。在本研究中,利用核磁共振(NMR)和俘获离子淌度质谱联用技术(TIMS-MS)研究了微菌素J25的套索结构。NMR实验表明,套索肽微菌素J25可呈现出Pro16处于顺式和反式取向的构象状态。借助定点诱变([P7A]、[P16A]和[P7A/P16A]变体)进行的高分辨率淌度分析表明,微菌素J25在Pro7和Pro16肽键处可呈现顺式/顺式、顺式/反式、反式/顺式和反式/反式构象。研究还表明,尽管存在套索拓扑结构,但构象之间的相互转换可作为起始溶剂条件和离子加热(碰撞诱导活化,CIA)的函数发生。与NMR研究结果互补,利用TIMS-MS确定了Pro7处的顺式构象。这项研究突出了TIMS-MS和定点诱变在研究具有大微观异质性的生物系统方面的分析能力,以此作为进一步增进我们对受体结合动力学和生物活性理解的一种方式。