CLASSIFICATION |
BPC |
Occurrence frequency of basic and positively charged residue (H, K, R) |
Sulfur |
Occurrence frequency of sulfur-containing residue (C, M) |
MCBPC |
Maximum consecutive basic and positively charged residue (H, K, R) |
logPFR |
Protein folding rate in log10 base, predicted using SeqRate |
CL |
Occurrence of dipeptide cysteine and leucine |
QD |
Occurrence of dipeptide glutamine and aspartic acid |
VE |
Occurrence of dipeptide valine and glutamic acid |
REGRESSION HIGH |
TP |
Occurrence of dipeptide threonine and proline |
VT |
Occurrence of dipeptide valine and threonine |
T × MCPhe |
Occurrence frequency of threonine interacting with maximum consecutive phenylalanine residue |
REGRESSION MEDIUM |
ER |
Occurrence of dipeptide glutamic acid and arginine |
WQ |
Occurrence of dipeptide tryptophan and glutamine |
VT |
Occurrence of dipeptide valine and threonine |
R × AbsCharge |
Occurrence frequency of arginine interacting with absolute charge per residue |
ANC × MCAliphatic |
Occurrence frequency of acidic and negatively charged residues interacting with maximum consecutive aliphatic residue (I, L, V, A, G) |
MCCys × pI |
Maximum consecutive cysteine residue interacting with isoelectric point (pI) |
REGRESSION LOW |
F × logPFR |
Occurrence frequency of phenylalanine interacting with protein folding rate in log10 base, predicted using SeqRate55
|
S × MCNPH |
Occurrence frequency of serine interacting with maximum consecutive non-polar and hydrophilic residue (I, L, V, A, G, P) |
y × transmembrane |
Occurrence of tyrosine interacting with occurrence of transmembrane, predicted using TMHMM56
|
Y × nlogPFR |
Occurrence frequency of tyrosine interacting with protein folding rate in natural log base, predicted using SeqRate |