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In this Resource article, we have built a structure model of the human sodium channel Nav1.7 based on the Cav1.1 cryo-EM structure (PDB code: 5GJV).
We built a structure model for human NAGLU using I-TASSER [ 39], given high sequence identity.
We built a structure model for human NAGLU based on this template (PDB identifier: 2VC9) using I-TASSER [ 39], given the high sequence identity.
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To build a structure model for a target protein sequence, the TBM process consists of four major steps: identification of structural templates, alignment of target sequence to structural templates (or sequence-structure alignment), model building, and model quality evaluation.
First we have built a sequential structure model which reveals to be irregular in time processing.
In fact Robinson used the compactness theorem to build a structure R′ that is a model of exactly the same sentences of L as R, but which has infinitesimals.
These are, in turn, basic ingredients of any serious attempt to build an AGN structure model.
We built a model structure of the GHSR1a dimer Gαq complex on the basis of the suggestion by Holst et al. (2005) that GHSR1a forms a homodimer (see Materials and Methods in File S1).
"We had built a wooden model of the structure yet we still hadn't seen the problem".
Based on the two GINS crystal structures, we built a homology model of the putative homotetrameric GINS from Thermoplasma acidophilum (TacGINS), and found that TacGINS could form the tetrameric subunit structure, in a similar manner to the α2β2 TkoGINS tetramer and the human GINS heterotetramer.
Based on the GINS crystal structures, we built a homology model of the putative homotetrameric GINS from Thermoplasma acidophilum (TacGINS).
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