Mutation O43502 at position 17: F → D (F17D)

Overview
Predicted structure (AF):
AF-O43502-F1-model_v4
Uniprot entry:
O43502
Gene:
O43502
Protein length:
376 residues
Mutation:
F → D
Mutation position:
17
D2Deep Prediction:
0.930
Overall confidence:
0.352
Pred. interpretation:
Pathogenic based on D2Deep prediction
 
Benign
Pathogenic
Scores that are greater than or equal to 0.5 are considered "Pathogenic", while scores that are less than 0.5 are considered "Benign".
Sequence difference
12 13 14 15 16 17 18 19 20 21 22
Original R D L V S F P L S P A
Target R D L V S D P L S P A
Predicted original structure

Differences at amino acid level
Feature Original «F» Target «D»
Name Phenylalanine (Phe) Aspartate (Aspartic acid) (Asp)
Molecular Formula C9H11NO2 C4H7NO4
Residue Formula C9H9NO C4H5NO3
Molecular Weight 165.190 133.110 (-32.080)
Residue Weight 147.180 115.090 (-32.090)
Hydrophobicity index at pH 2 Very Hydrophobic Neutral
Hydrophobicity index at pH 7 Very Hydrophobic Hydrophilic
Charge Neutral Negative
Solutibility 2.700 0.420
Structure Image Original Structure Target Structure
Description Phenylalanine (Phe) can break down into tyrosine within the body. Aspartic acid (Asp) is water soluble, which then allows it to be near the active sites of enzymes.
Predicted structures comparison

About these 3D Structures: The 3D structure representations of both original and target sequences (trimmed to 400 residues, from 1 to 217) will be modeled using the ESM Metagenomic Atlas tools. ESM Metagenomic Atlas is a web-based tool for protein structure prediction that uses deep learning methods to predict protein folding and structure from protein sequences.

Below the plots, you will find additional details on how to interpret the biophysical results.


Differences at biophysical features

About these plots: These plots have been generated by using Bio2Byte predictors to plot both the original and target sequences.

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Biophysical features
Interpretation of the biophysical features

The predictions reflect 'emerging' properties, so what the sequence is capable of, not necessarily what it will do in a particular context, for example when it adopts a specific fold.

DynaMine Backbone Dynamics
  • > 1.0 Membrane spanning regions
  • 0.80 - 1.0 Rigid conformations
  • 0.69 - 0.80 Context dependent
  • < 0.69 Flexible regions
DynaMine Side Chain Dynamics

Higher values mean more likely rigid. These values are highly dependent on the amino acid type (e.g. Trp is rigid, Asp is flexible).

DynaMine Conformational Propensities
  • Sheet: Beta sheets consist of β-strands connected laterally by hydrogen bonds, forming a pleated sheet.
  • Helix: Alpha helices are right-handed coiled structures stabilized by hydrogen bonds.
  • Coil: Coil regions lack regular secondary structure and are flexible.
  • ppII: Polyproline II, a left-handed helical structure found in proline-rich regions.

Higher values indicate higher propensities for each structural element.

EFoldMine Early Folding Propensity

Values above 0.169 indicate residues likely to start the protein folding process, based on local interactions.

DisoMine Disorder Prediction

Values above 0.50 indicate likely disordered residues.

Agmata Beta-Sheet Aggregation Propensity

Values are divided by 20 from the original. Peaks indicate residues likely involved in beta-sheet aggregation.