Strategy for the Study of Paramagnetic Proteins with Slow Electronic Relaxation Rates by NMR Spectroscopy: Application to Oxidized Human [2Fe-2S] Ferredoxin

被引:0
|
作者
机构
[1] Machonkin, Timothy E.
[2] Westler, William M.
[3] Markley, John L.
来源
Markley, J.L. (markley@nmrfam.wisc.edu) | 1600年 / American Chemical Society卷 / 126期
关键词
Amino acids - Carbon - Nuclear magnetic resonance spectroscopy - Paramagnetic materials - Resonance;
D O I
暂无
中图分类号
学科分类号
摘要
NMR studies of paramagnetic proteins are hampered by the rapid relaxation of nuclei near the paramagnetic center, which prevents the application of conventional methods to investigations of the most interesting regions of such molecules. This problem is particularly acute in systems with slow electronic relaxation rates. We present a strategy that can be used with a protein with slow electronic relaxation to identify and assign resonances from nuclei near the paramagnetic center. Oxidized human [2Fe-2S] ferredoxin (adrenodoxin) was used to test the approach. The strategy involves six steps: (1) NMR signals from 1H, 13C, and 15N nuclei unaffected or minimally affected by paramagnetic effects are assigned by standard multinuclear two- and three-dimensional (2D and 3D) spectroscopic methods with protein samples labeled uniformly with 13C and 15N. (2) The very broad, hyperfine-shifted signals from carbons in the residues that ligate the metal center are classified by amino acid and atom type by selective 13C labeling and one-dimensional (1D) 13C NMR spectroscopy. (3) Spin systems involving carbons near the paramagnetic center that are broadened but not hyperfine-shifted are elucidated by 13C{13C} constant time correlation spectroscopy (CT-COSY). (4) Signals from amide nitrogens affected by the paramagnetic center are assigned to amino acid type by selective 15N labeling and 1D 15N NMR spectroscopy. (5) Sequence-specific assignments of these carbon and nitrogen signals are determined by 1D 13C{15N} difference decoupling experiments. (6) Signals from 1H nuclei in these spin systems are assigned by paramagnetic-optimized 2D and 3D 1H{13C} experiments. For oxidized human ferredoxin, this strategy led to assignments (to amino acid and atom type) for 88% of the carbons in the [2Fe-2S] cluster-binding loops (residues 43-58 and 89-94). These included complete carbon spin-system assignments for eight of the 22 residues and partial assignments for each of the others. Sequence-specific assignments were determined for the backbone 15N signals from nine of the 22 residues and ambiguous assignments for five of the others.
引用
收藏
相关论文
共 50 条
  • [21] STRUCTURAL DIFFERENCES BETWEEN [2FE-2S] CLUSTERS IN SPINACH FERREDOXIN AND IN THE RED PARAMAGNETIC PROTEIN FROM CLOSTRIDIUM-PASTEURIANUM - A RESONANCE RAMAN-STUDY
    MEYER, J
    MOULIS, JM
    LUTZ, M
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1984, 119 (03) : 828 - 835
  • [22] Synthesis and reactivity of new [2Fe-2S] clusters to study the role of mitoNEET proteins
    Ferguson, Kady
    Sterling, Kevin
    Kim, Eunsuk
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 256
  • [23] ANALYSIS OF STRAIN-INDUCED EPR-LINE SHAPES AND ANISOTROPIC SPIN-LATTICE RELAXATION IN A [2FE-2S] FERREDOXIN
    HAGEN, WR
    ALBRACHT, SPJ
    BIOCHIMICA ET BIOPHYSICA ACTA, 1982, 702 (01) : 61 - 71
  • [24] A MOSSBAUER STUDY OF SLOW SPIN RELAXATION OF PARAMAGNETIC FE-2+ IN MGCO3
    SRIVASTAVA, KKP
    JOURNAL OF PHYSICS C-SOLID STATE PHYSICS, 1983, 16 (02): : L53 - L55
  • [25] Probing magnetic properties of the reduced [2Fe-2S] cluster of the ferredoxin from Arthrospira platensis by 1H ENDOR spectroscopy
    Canne, C
    Ebelshäuser, M
    Gay, E
    Shergill, JK
    Cammack, R
    Kappl, R
    Hüttermann, J
    JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2000, 5 (04): : 514 - 526
  • [26] Probing magnetic properties of the reduced [2Fe-2S] cluster of the ferredoxin from Arthrospira platensis by 1H ENDOR spectroscopy
    Christoph Canne
    Michael Ebelshäuser
    Elaine Gay
    Jas K. Shergill
    Richard Cammack
    Reinhard Kappl
    J. Hüttermann
    JBIC Journal of Biological Inorganic Chemistry, 2000, 5 (4) : 514 - 526
  • [27] MOLECULAR-STRUCTURE OF THE OXIDIZED, RECOMBINANT, HETEROCYST [2FE-2S] FERREDOXIN FROM ANABAENA-7120 DETERMINED TO 1.7-ANGSTROM RESOLUTION
    JACOBSON, BL
    CHAE, YK
    MARKLEY, JL
    RAYMENT, I
    HOLDEN, HM
    BIOCHEMISTRY, 1993, 32 (26) : 6788 - 6793
  • [28] AN NMR-DERIVED MODEL FOR THE SOLUTION STRUCTURE OF OXIDIZED PUTIDAREDOXIN, A 2-FE, 2-S FERREDOXIN FROM PSEUDOMONAS
    POCHAPSKY, TC
    YE, XM
    RATNASWAMY, G
    LYONS, TA
    BIOCHEMISTRY, 1994, 33 (21) : 6424 - 6432
  • [29] Structural effects on the electronic structure and intrinsic redox properties of Rieske-type [2Fe-2S] proteins
    Niu, Shuqiang
    Fu, You-Jun
    Wang, Lai Sheng
    Ichiye, Toshiko
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2005, 230 : U2061 - U2061
  • [30] Probing the electronic structure of [2Fe-2S] clusters with three coordinate iron sites by use of photoelectron spectroscopy
    Fu, YJ
    Yang, X
    Wang, XB
    Wang, LS
    JOURNAL OF PHYSICAL CHEMISTRY A, 2005, 109 (09): : 1815 - 1820