Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
---|---|---|---|---|---|
27926 | 2020-03-05 | Chemical Shifts: 1 set Spectral_peak_list: 2 sets |
RTNLB13_APH_16 |
Revealing the mechanism of protein-lipid interactions for a putative membrane curvature sensor in plant endoplasmic reticulum
|
Ann M Dixon, Rhiannon L Brooks |
27927 | 2020-03-05 | Chemical Shifts: 1 set Spectral_peak_list: 2 sets |
RTNLB13_APH_18 |
Revealing the mechanism of protein-lipid interactions for a putative membrane curvature sensor in plant endoplasmic reticulum
|
Ann M Dixon, Rhiannon L Brooks |
27928 | 2020-03-05 | Chemical Shifts: 1 set Spectral_peak_list: 2 sets |
RTNLB13_APH_22 |
Revealing the mechanism of protein-lipid interactions for a putative membrane curvature sensor in plant endoplasmic reticulum
|
Ann M Dixon, Rhiannon L Brooks |
19297 | 2013-06-28 | Chemical Shifts: 1 set |
Chemical shift assignments of the human C-type lectin DC-SIGNR (Dendritic Cell-Specific Intercellular adhesion molecule-3-Grabbing Non-integrin related) carbohydrate recognition domain in the holo (calcium bound) form. |
Solution NMR analyses of the C-type carbohydrate recognition domain of DC-SIGNR protein reveal different binding modes for HIV-derived oligosaccharides and smaller glycan fragments.
|
Ann M Dixon, Daniel A Mitchell, Fay Probert, Max Crispin, Sara B-M Whittaker |