The time-zero HSQC method improves the linear free energy relationship of a polypeptide chain through the accurate measurement of residue-specific equilibrium constants

IF 1.3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biomolecular NMR Pub Date : 2022-06-14 DOI:10.1007/s10858-022-00396-y
Seiichiro Hayashi, Daisuke Kohda
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引用次数: 3

Abstract

EXSY (exchange spectroscopy) NMR provides the residue-specific equilibrium constants, K, and residue-specific kinetic rate constants, k, of a polypeptide chain in a two-state exchange in the slow exchange regime. A linear free energy relationship (LFER) discovered in a log k versus log K plot is considered to be a physicochemical basis for smooth folding and conformational changes of protein molecules. For accurate determination of the thermodynamic and kinetic parameters, the measurement bias arising from state-specific differences in the R1 and R2 relaxation rates of 1H and other nuclei in HSQC and EXSY experiments must be minimized. Here, we showed that the time-zero HSQC acquisition scheme (HSQC0) is effective for this purpose, in combination with a special analytical method (Π analysis) for EXSY. As an example, we applied the HSQC0 + Π method to the two-state exchange of nukacin ISK-1 in an aqueous solution. Nukacin ISK-1 is a 27-residue lantibiotic peptide containing three mono-sulfide linkages. The resultant bias-free residue-based LFER provided valuable insights into the transition state of the topological interconversion of nukacin ISK-1. We found that two amino acid residues were exceptions in the residue-based LFER relationship. We inferred that the two residues could adopt special conformations in the transition state, to allow the threading of some side chains through a ring structure formed by one of the mono-sulfide linkages. In this context, the two residues are a useful target for the manipulation of the physicochemical properties and biological activities of nukacin ISK-1.

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时间零HSQC方法通过精确测量残基特定平衡常数,改善了多肽链的线性自由能关系
EXSY(交换光谱)NMR提供了慢交换体系中两态交换多肽链的残基特异性平衡常数K和残基特异性动力学速率常数K。在log k对log k图中发现的线性自由能关系(LFER)被认为是蛋白质分子平滑折叠和构象变化的物理化学基础。为了准确地确定热力学和动力学参数,必须最小化HSQC和EXSY实验中1H和其他原子核R1和R2弛豫速率的状态特异性差异所引起的测量偏差。在这里,我们证明了零时间HSQC采集方案(HSQC0)结合EXSY的特殊分析方法(Π分析)是有效的。作为一个例子,我们将HSQC0 + Π方法应用于nukacin ISK-1在水溶液中的两态交换。Nukacin ISK-1是一种含有27个残基的抗生素肽,含有三个单硫化物键。由此产生的基于无偏置残基的LFER为努卡星ISK-1拓扑互转换的过渡状态提供了有价值的见解。我们发现两个氨基酸残基是残基LFER关系中的例外。我们推测这两个残基在过渡态可以采用特殊的构象,以允许一些侧链穿过由一个单硫化物键形成的环结构。在这种情况下,这两个残基是操纵努卡星ISK-1的物理化学性质和生物活性的有用靶标。
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来源期刊
Journal of Biomolecular NMR
Journal of Biomolecular NMR 生物-光谱学
CiteScore
6.00
自引率
3.70%
发文量
19
审稿时长
6-12 weeks
期刊介绍: The Journal of Biomolecular NMR provides a forum for publishing research on technical developments and innovative applications of nuclear magnetic resonance spectroscopy for the study of structure and dynamic properties of biopolymers in solution, liquid crystals, solids and mixed environments, e.g., attached to membranes. This may include: Three-dimensional structure determination of biological macromolecules (polypeptides/proteins, DNA, RNA, oligosaccharides) by NMR. New NMR techniques for studies of biological macromolecules. Novel approaches to computer-aided automated analysis of multidimensional NMR spectra. Computational methods for the structural interpretation of NMR data, including structure refinement. Comparisons of structures determined by NMR with those obtained by other methods, e.g. by diffraction techniques with protein single crystals. New techniques of sample preparation for NMR experiments (biosynthetic and chemical methods for isotope labeling, preparation of nutrients for biosynthetic isotope labeling, etc.). An NMR characterization of the products must be included.
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