Mutation P84243 at position 11: S → K (S11K)

Overview
Predicted structure (AF):
AF-P84243-F1-model_v4
Uniprot entry:
P84243
Gene:
P84243
Protein length:
136 residues
Mutation:
S → K
Mutation position:
11
D2Deep Prediction:
0.000
Overall confidence:
0.832
Pred. interpretation:
Benign 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
6 7 8 9 10 11 12 13 14 15 16
Original Q T A R K S T G G K A
Target Q T A R K K T G G K A
Predicted original structure

Differences at amino acid level
Feature Original «S» Target «K»
Name Serine (Ser) Lysine (Lys)
Molecular Formula C3H7NO3 C6H14N2O2
Residue Formula C3H5NO2 C6H12N2O
Molecular Weight 105.090 146.190 (+41.100)
Residue Weight 87.080 128.180 (+41.100)
Hydrophobicity index at pH 2 Neutral Hydrophilic
Hydrophobicity index at pH 7 Neutral Hydrophilic
Charge Neutral Positive
Solutibility 36.200 Undetermined
Structure Image Original Structure Target Structure
Description Serine (Ser) is involved in biosynthesis of metabolites and is important in the catalytic function of enzymes. Lysine (Lys) is in the binding enzymes to coenzymes. It plays an important role in the way that histones function. Specifically, it binds to histone acetyl transferases which alter the transcription of certain genes.
Predicted structures comparison

About these 3D Structures: The 3D structure representations of both original and target sequences (trimmed to 400 residues, from 1 to 136) 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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