Nanometer-range distances are important for restraining the three-dimensional structure and oligomeric assembly of proteins and other biological molecules. Solid-state NMR determination of protein structures typically utilizes 13C–13C and 13C–15N distance restraints, which can only be measured up to ∼7 Å because of the low gyromagnetic ratios of these nuclear spins. To extend the distance reach of NMR, one can harvest the power of 19F, whose large gyromagnetic ratio in principle allows distances up to 2 nm to be measured. However, 19F possesses large chemical shift anisotropies (CSAs) as well as large isotropic chemical shift dispersions, which pose challenges to dipolar coupling measurements. Here, we demonstrate 19F–19F distance measureme...
We present a new solid-state NMR pulse sequence that accomplishes efficient broad-band dipolar recou...
© 2020, Springer Nature B.V. 19F solid-state NMR is an excellent approach for measuring long-range d...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2008.This electronic ver...
Nanometer-range distances are important for restraining the three-dimensional structure and oligomer...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
© 2018 American Chemical Society. Internuclear distances measured using NMR provide crucial constrai...
The ability to simultaneously measure many long-range distances is critical to efficient and accurat...
Protein structure determination by solid-state NMR requires the measurement of many interatomic dist...
© 2020 American Chemical Society. We present a class of pulsed third-spin-assisted recoupling (P-TSA...
A new spinning-angle-encoding spin-echo solid-state NMR approach is used to accurately determine the...
By introducing dipolar recoupling methods to high-resolution magic-angle spinning (HRMAS) NMR spectr...
A new 19F anisotropic–isotropic shift correlation experiment is described that operates with ultrafa...
Magic-angle spinning (MAS) solid-state NMR becomes an increasingly important tool for the determinat...
Structure determination by solid-state NMR of proteins is rapidly advancing as a result of recent de...
We present a new solid-state NMR pulse sequence that accomplishes efficient broad-band dipolar recou...
© 2020, Springer Nature B.V. 19F solid-state NMR is an excellent approach for measuring long-range d...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2008.This electronic ver...
Nanometer-range distances are important for restraining the three-dimensional structure and oligomer...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
© 2018 American Chemical Society. Internuclear distances measured using NMR provide crucial constrai...
The ability to simultaneously measure many long-range distances is critical to efficient and accurat...
Protein structure determination by solid-state NMR requires the measurement of many interatomic dist...
© 2020 American Chemical Society. We present a class of pulsed third-spin-assisted recoupling (P-TSA...
A new spinning-angle-encoding spin-echo solid-state NMR approach is used to accurately determine the...
By introducing dipolar recoupling methods to high-resolution magic-angle spinning (HRMAS) NMR spectr...
A new 19F anisotropic–isotropic shift correlation experiment is described that operates with ultrafa...
Magic-angle spinning (MAS) solid-state NMR becomes an increasingly important tool for the determinat...
Structure determination by solid-state NMR of proteins is rapidly advancing as a result of recent de...
We present a new solid-state NMR pulse sequence that accomplishes efficient broad-band dipolar recou...
© 2020, Springer Nature B.V. 19F solid-state NMR is an excellent approach for measuring long-range d...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2008.This electronic ver...