© 2018 American Chemical Society. Internuclear distances measured using NMR provide crucial constraints of three-dimensional structures but are often restricted to about 5 Å due to the weakness of nuclear-spin dipolar couplings. For studying macromolecular assemblies in biology and materials science, distance constraints beyond 1 nm will be extremely valuable. Here we present an extensive and quantitative analysis of the feasibility of 19F spin exchange NMR for precise and robust measurements of interatomic distances up to 1.6 nm at a magnetic field of 14.1 T, under 20-40 kHz magic-angle spinning (MAS). The measured distances are comparable to those achievable from paramagnetic relaxation enhancement but have higher precision, which is bett...
Since the first pioneering studies on small deuterated peptides dating more than 20 years ago, 1H de...
Rotational-resonance magic-angle spinning NMR experiments are frequently used to measure dipolar cou...
We demonstrate a novel 3D NNC magic angle spinning NMR experiment that generates ¹⁵N–¹⁵N internuclea...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
Nanometer-range distances are important for restraining the three-dimensional structure and oligomer...
Nanometer-range distances are important for restraining the three-dimensional structure and oligomer...
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...
A new spinning-angle-encoding spin-echo solid-state NMR approach is used to accurately determine the...
Magic-angle spinning (MAS) solid-state NMR becomes an increasingly important tool for the determinat...
© 2020 American Chemical Society. We present a class of pulsed third-spin-assisted recoupling (P-TSA...
New solid-state NMR experiments for measuring internuclear distances are designed using symmetry pri...
A new 19F anisotropic–isotropic shift correlation experiment is described that operates with ultrafa...
We describe magic-angle-spinning NMR methods for the accurate determination of internuclear dipole−d...
Since the first pioneering studies on small deuterated peptides dating more than 20 years ago, 1H de...
Rotational-resonance magic-angle spinning NMR experiments are frequently used to measure dipolar cou...
We demonstrate a novel 3D NNC magic angle spinning NMR experiment that generates ¹⁵N–¹⁵N internuclea...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
Internuclear distances measured using NMR provide crucial constraints of three-dimensional structure...
Nanometer-range distances are important for restraining the three-dimensional structure and oligomer...
Nanometer-range distances are important for restraining the three-dimensional structure and oligomer...
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...
A new spinning-angle-encoding spin-echo solid-state NMR approach is used to accurately determine the...
Magic-angle spinning (MAS) solid-state NMR becomes an increasingly important tool for the determinat...
© 2020 American Chemical Society. We present a class of pulsed third-spin-assisted recoupling (P-TSA...
New solid-state NMR experiments for measuring internuclear distances are designed using symmetry pri...
A new 19F anisotropic–isotropic shift correlation experiment is described that operates with ultrafa...
We describe magic-angle-spinning NMR methods for the accurate determination of internuclear dipole−d...
Since the first pioneering studies on small deuterated peptides dating more than 20 years ago, 1H de...
Rotational-resonance magic-angle spinning NMR experiments are frequently used to measure dipolar cou...
We demonstrate a novel 3D NNC magic angle spinning NMR experiment that generates ¹⁵N–¹⁵N internuclea...