Robust and efficient band-selective magnetization transfer between CO and CA spins can be achieved in highly deuterated solid proteins by dipolar-based homonuclear cross polarization. The approach is designed for moderate magic-angle spinning rates and high external magnetic fields where the isotropic chemical shift difference of CO and CA considerably exceeds the spinning rate. The most efficient recoupling is achieved when the sum of effective radio-frequency fields on CO and CA resonances equals two times the spinning rate. This method can be directly implemented in proton-detected versions of inter-residual correlation experiments as needed for resonance assignment in protein solid-state NMR spectroscopy
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Interactions within proteins, with their surrounding, and with other molecules are mediated mostly b...
International audienceWe show that the resolution of homonuclear multidimensional solid-state NMR co...
Previously introduced for highly deuterated proteins, band-selective magnetization transfer between ...
We have recently presented band-selective homonuclear cross-polarization (BSH-CP) as an efficient me...
For micro-crystalline proteins, solid-state nuclear magnetic resonance spectroscopy of perdeuterated...
In this article, we describe third-spin assisted heteronuclear recoupling experiments, which play an...
We introduce a homonuclear version of third spin assisted recoupling, a second-order mechanism that ...
A new experimental approach is introduced which leads to significant resolution enhancement in multi...
Proton-detected solid-state NMR was applied to a highly deuterated insoluble, non-crystalline biolog...
Efficient transfer of spin polarisation from electron to nuclear spins is emerging as a common targe...
The assignment of protein backbone and side-chain NMR chemical shifts is the first step towards the ...
We present two sequences which combine (H-1,N-15) and (N-15,C-13) selective cross-polarization steps...
The performance of solution cross-polarization using trains of shaped pulses on two channels is inve...
We present here H-1-detected triple-resonance H/N/C experiments that incorporate CO-CA and CA-CB out...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Interactions within proteins, with their surrounding, and with other molecules are mediated mostly b...
International audienceWe show that the resolution of homonuclear multidimensional solid-state NMR co...
Previously introduced for highly deuterated proteins, band-selective magnetization transfer between ...
We have recently presented band-selective homonuclear cross-polarization (BSH-CP) as an efficient me...
For micro-crystalline proteins, solid-state nuclear magnetic resonance spectroscopy of perdeuterated...
In this article, we describe third-spin assisted heteronuclear recoupling experiments, which play an...
We introduce a homonuclear version of third spin assisted recoupling, a second-order mechanism that ...
A new experimental approach is introduced which leads to significant resolution enhancement in multi...
Proton-detected solid-state NMR was applied to a highly deuterated insoluble, non-crystalline biolog...
Efficient transfer of spin polarisation from electron to nuclear spins is emerging as a common targe...
The assignment of protein backbone and side-chain NMR chemical shifts is the first step towards the ...
We present two sequences which combine (H-1,N-15) and (N-15,C-13) selective cross-polarization steps...
The performance of solution cross-polarization using trains of shaped pulses on two channels is inve...
We present here H-1-detected triple-resonance H/N/C experiments that incorporate CO-CA and CA-CB out...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Interactions within proteins, with their surrounding, and with other molecules are mediated mostly b...
International audienceWe show that the resolution of homonuclear multidimensional solid-state NMR co...