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NAD+ is shown as sphere.
(C ) Dimethylated lysine (MLY) residues on the protein surface of methylated Norrin Fz4CRD are shown as sphere models.
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(A) Surface representation of F86YF87Y structure showed that a hole was formed in its surface due to the conformational change of helix H5. (B) The partial enlarged detail of surface interpretation of F86YF87Y structure, two iron atoms (shown as yellow spheres) and the water molecule (shown as red sphere) in the active center can be observed from the hole.
The oxo bridge and the two iron atoms (shown as yellow spheres), which are hidden inside the ADO molecule in WT-HP structure (C), are accessible in F86YF87Y structure (D).
The metal ions are shown as spheres.
H atoms are shown as spheres of arbitrary radius.
Zn2+ ions are shown as spheres, and the coordinating residues are shown as sticks.
Mg-ADP, ATPγS and GBM molecules are all shown as spheres.
Catalytic waters bonded to His-Asp dyad are shown as spheres (inset).
Potential residues involved in the binding of EV71 with SCARB2 are shown as spheres.
Rotation angle between CTDs (cytoplasmic domain) was measured using Cα positions of L356 of Kir6.2, shown as spheres.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com