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Disordered parts of the structure correspond to regions of genuine flexibility; as well as the N-terminal tail, the two disordered loops (residues 37 44 and 108 120) correspond to very clearly distinguished regions of low N{H} NOE values.
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The structure corresponds to the way the content is displayed in the correct design and formats.
An extremely significant problem related to the structure corresponds to the possibility of a multi-estimation problem as a result of the branches.
In this case, the connecting TMs would have to sit in the same membranes; thus, the structure corresponds to a "post-fusion" state in which the membranes have already fused.
The structure corresponds to the asymmetric crystal structure of AcrB at a resolution of 1.9 Å (PDB entry 4DX5).
Residues having the highest average B-factors (obtained from the crystal structure) correspond to the most flexible sites in the protein and provide targets for mutagenesis to improve thermostability.
This shows the structure for the face (001), dots above of the polyhedral structure correspond to OH surface groups.
The measured results of the fabricated prototype structure correspond well to the simulated values.
The dynamic of the nucleoid structure corresponds to the shift between small spirals of unexpressed coiled DNA to large spirals of expressed uncoiled DNA, and vice-versa.
Accordingly, both geometries, superimposed in the averaged crystal structure, correspond to snapshots of the ligand-bound and the unbound state.
The dark area within the retinal structure corresponds to the inner plexiform layer, where fluorescence is almost negligible.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com