<p>a) Peripheral position of the amino acid 277 (domain A); b) Wild type variant 277Glu; c) Mutant variant 277Lys.</p
<p><b>A.</b> The human Cα wild type and mutated amino acid sequence. The N-terminal methionine of Cα...
<p>3D structure was predicted at Protein Homology/analogY Recognition Engine (PhyreEngine) from the ...
The specific sequence of amino acids in a polypeptide chain dictates the three-dimensional structure...
<p>The amino acid number was designated according to the previous nomenclature described in the Huma...
<p>(A) Protein structures predicted by SWISS-MODEL were visualized by PyMOL. The wild type is repres...
<p>A) Domain organization of the IT4var60 PfEMP1 protein with underlined the construct used in this ...
<p>A. D1042 lies within a loop between two strands. The wild-type protein has a longer side chain th...
(a) Overview of CYP1B1 wild type protein in ribbon-presentation (b-l) In-silico protein prediction r...
<p>(a) Local tertiary molecular structure of, (b–i) wild-type and (b–ii) mutant PMCA4 (or ATP2B4) pr...
<p>The paired domain of wild-type Pax2 domain DNA are represented by red and white ribbons, respecti...
<p>Distribution of the residue numbers among different structural regions for each protein dynamical...
(A) View of the wild type (top picture) and mutated (bottom picture) DNAI1 protein. Wild type DNAI1 ...
<p>A. Upper half. The schematic domain structure of Pol ι is shown (PIP is the protein interaction d...
<p>(A) Overview of the modeled POU4F3 domain. The protein chain is shown in grey using a ribbon repr...
<p>The P (phosphorylation) domain, N (nucleotide binding) domain and A (actuator) domains are indica...
<p><b>A.</b> The human Cα wild type and mutated amino acid sequence. The N-terminal methionine of Cα...
<p>3D structure was predicted at Protein Homology/analogY Recognition Engine (PhyreEngine) from the ...
The specific sequence of amino acids in a polypeptide chain dictates the three-dimensional structure...
<p>The amino acid number was designated according to the previous nomenclature described in the Huma...
<p>(A) Protein structures predicted by SWISS-MODEL were visualized by PyMOL. The wild type is repres...
<p>A) Domain organization of the IT4var60 PfEMP1 protein with underlined the construct used in this ...
<p>A. D1042 lies within a loop between two strands. The wild-type protein has a longer side chain th...
(a) Overview of CYP1B1 wild type protein in ribbon-presentation (b-l) In-silico protein prediction r...
<p>(a) Local tertiary molecular structure of, (b–i) wild-type and (b–ii) mutant PMCA4 (or ATP2B4) pr...
<p>The paired domain of wild-type Pax2 domain DNA are represented by red and white ribbons, respecti...
<p>Distribution of the residue numbers among different structural regions for each protein dynamical...
(A) View of the wild type (top picture) and mutated (bottom picture) DNAI1 protein. Wild type DNAI1 ...
<p>A. Upper half. The schematic domain structure of Pol ι is shown (PIP is the protein interaction d...
<p>(A) Overview of the modeled POU4F3 domain. The protein chain is shown in grey using a ribbon repr...
<p>The P (phosphorylation) domain, N (nucleotide binding) domain and A (actuator) domains are indica...
<p><b>A.</b> The human Cα wild type and mutated amino acid sequence. The N-terminal methionine of Cα...
<p>3D structure was predicted at Protein Homology/analogY Recognition Engine (PhyreEngine) from the ...
The specific sequence of amino acids in a polypeptide chain dictates the three-dimensional structure...