Massi Francesca, Grey Michael J, Palmer Arthur G
Department of Biochemistry and Molecular Biophysics, Columbia University, 630 West 168th Street, New York, NY 10032, USA.
Protein Sci. 2005 Mar;14(3):735-42. doi: 10.1110/ps.041139505.
NMR spin relaxation experiments are used to characterize the dynamics of the backbone of ubiquitin. Chemical exchange processes affecting residues Ile 23, Asn 25, Thr 55, and Val 70 are characterized using on- and off-resonance rotating-frame 15N R1rho relaxation experiments to have a kinetic exchange rate constant of 25,000 sec(-1) at 280 K. The exchange process affecting residues 23, 25, and 55 appears to result from disruption of N-cap hydrogen bonds of the alpha-helix and possibly from repacking of the side chain of Ile 23. Chemical exchange processes affecting other residues on the surface of ubiquitin are identified using 1H-15N multiple quantum relaxation experiments. These residues are located near or at the regions known to interact with various enzymes of the ubiquitin-dependent protein degradation pathway.
核磁共振自旋弛豫实验用于表征泛素主链的动力学。通过使用共振和非共振旋转框架15N R1rho弛豫实验来表征影响残基Ile 23、Asn 25、Thr 55和Val 70的化学交换过程,在280 K时其动力学交换速率常数为25,000秒-1。影响残基23、25和55的交换过程似乎是由α-螺旋的N-帽氢键破坏以及可能由Ile 23侧链的重新排列导致的。使用1H-15N多量子弛豫实验鉴定影响泛素表面其他残基的化学交换过程。这些残基位于已知与泛素依赖性蛋白质降解途径的各种酶相互作用的区域附近或该区域。