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Conformational Kinetics Study of MP-11 Using TIMS-MS and Molecular Dynamics

机译:用TIms-ms和分子动力学研究mp-11的构象动力学

摘要

In the present work, we studied the conformational kinetics of microperoxidase 11 (MP-11), a digest fragment of cytochrome C that contains 11 amino acids with a covalently attached heme group. In particular, a novel technique recently developed at FIU in collaboration with Bruker Daltonics Inc. combined with theoretical calculation was used for the characterization of MP- 11 conformational space [1-3]. Accurate ion-neutral collision cross sections were measured for all MP-11 generated charge states. Since MP-11 (like cytochrome C) undergoes conformational changes as a function of the solvent state, MP-11 ions were produced by electrospray ionization (ESI) in order to preserve the initial solution state structure and analyzed on the basis of size-to-charge, inside the Trapped Ion Mobility Spectrometer (TIMS) followed by mass identification using a time-of-flight mass analyzer (MS) [4-5]. TIMS-MS has the advantage that molecular ions can be trapped for several seconds which allow us to study the kinetics and stability of various isomers as a function of time, initial pH value (6.1, 4.5, 3.1), and molecular ion temperature. Results showed that MP-11 conformations vary with pH levels and trapping time, and multiple interconversion pathways were observed for [M+2H]+2 and [M+3H]+3 charge states. Candidate structures were proposed for each conformation observed and main molecular interactions responsible for the conformational changes are discussed.
机译:在本工作中,我们研究了微过氧化物酶11(MP-11)的构象动力学,该酶是细胞色素C的消化片段,其中包含11个具有共价连接的血红素基团的氨基酸。特别是,最近在FIU与Bruker Daltonics Inc.合作开发的一种新颖技术与理论计算相结合,用于MP-11构象空间的表征[1-3]。测量了所有MP-11产生的电荷状态的准确的离子中性碰撞截面。由于MP-11(像细胞色素C)随溶剂状态发生构象变化,因此通过电喷雾电离(ESI)产生MP-11离子以保留初始溶液状态结构,并根据捕集离子淌度谱仪(TIMS)内部进行充电,然后使用飞行时间质量分析仪(MS)进行质量鉴定[4-5]。 TIMS-MS的优势在于可以将分子离子捕获数秒,这使我们能够研究各种异构体的动力学和稳定性,这些动力学和稳定性是时间,初始pH值(6.1、4.5、3.1)和分子离子温度的函数。结果表明,MP-11构象随pH值和捕获时间而变化,并且在[M + 2H] +2和[M + 3H] +3电荷状态下观察到多种相互转化途径。提出了每个观察到的构象的候选结构,并讨论了负责构象变化的主要分子相互作用。

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