RhlA Prediction
Collection
Predicts mutation effects on the RhlA enzyme,data from CAPE, using label for evaluation. It performed with a Spearman's ρ of 0.862.
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2 items
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Updated
protein
stringlengths 6
6
| label
float64 0.02
3.35
|
---|---|
RAQLSQ | 1 |
AAQLSQ | 3.228 |
CAQLSQ | 2.17 |
DAQLSQ | 1.759 |
EAQLSQ | 1.531 |
FAQLSQ | 1.524 |
GAQLSQ | 1.05 |
HAQLSQ | 0.939 |
IAQLSQ | 0.984 |
KAQLSQ | 2.541 |
LAQLSQ | 3.351 |
MAQLSQ | 1.45 |
NAQLSQ | 2.417 |
PAQLSQ | 2.451 |
QAQLSQ | 0.67 |
SAQLSQ | 1.439 |
TAQLSQ | 2.533 |
VAQLSQ | 0.327 |
WAQLSQ | 1.241 |
YAQLSQ | 1.627 |
RFQLSQ | 0.533 |
RGQLSQ | 0.038 |
RLQLSQ | 0.11 |
RMQLSQ | 0.751 |
RNQLSQ | 0.034 |
RPQLSQ | 0.283 |
RRQLSQ | 0.081 |
RSQLSQ | 0.425 |
RTQLSQ | 0.534 |
RVQLSQ | 0.467 |
RYQLSQ | 0.072 |
RAALSQ | 1.508 |
RACLSQ | 1.224 |
RADLSQ | 0.476 |
RAELSQ | 0.693 |
RAFLSQ | 0.506 |
RAGLSQ | 0.609 |
RAHLSQ | 0.765 |
RALLSQ | 1.33 |
RANLSQ | 0.059 |
RAPLSQ | 0.074 |
RARLSQ | 1.595 |
RASLSQ | 0.13 |
RATLSQ | 1.752 |
RAVLSQ | 1.558 |
RAWLSQ | 0.534 |
RAYLSQ | 1.74 |
RAQASQ | 3.068 |
RAQCSQ | 2.773 |
RAQDSQ | 2.385 |
RAQESQ | 2.346 |
RAQFSQ | 1.549 |
RAQGSQ | 0.803 |
RAQHSQ | 1.629 |
RAQISQ | 3.24 |
RAQKSQ | 2.792 |
RAQNSQ | 0.578 |
RAQPSQ | 0.168 |
RAQQSQ | 2.375 |
RAQRSQ | 1.386 |
RAQTSQ | 3.035 |
RAQVSQ | 2.606 |
RAQWSQ | 1.206 |
RAQYSQ | 1.307 |
RAQLAQ | 2.679 |
RAQLCQ | 2.421 |
RAQLDQ | 0.07 |
RAQLEQ | 0.114 |
RAQLFQ | 1.152 |
RAQLGQ | 0.832 |
RAQLHQ | 1.006 |
RAQLKQ | 2.78 |
RAQLLQ | 1.842 |
RAQLMQ | 0.053 |
RAQLNQ | 0.693 |
RAQLPQ | 0.158 |
RAQLQQ | 1.323 |
RAQLRQ | 1.619 |
RAQLTQ | 1.8 |
RAQLVQ | 1.676 |
RAQLWQ | 0.166 |
RAQLYQ | 0.588 |
RAQLSA | 3.072 |
RAQLSC | 1.114 |
RAQLSD | 1.391 |
RAQLSE | 0.745 |
RAQLSF | 0.712 |
RAQLSG | 1.097 |
RAQLSH | 0.981 |
RAQLSI | 1.08 |
RAQLSK | 2.435 |
RAQLSL | 1.59 |
RAQLSM | 0.089 |
RAQLSN | 2.122 |
RAQLSP | 0.726 |
RAQLSR | 1.786 |
RAQLSS | 1.655 |
RAQLST | 1.191 |
RAQLSV | 0.146 |
RAQLSW | 0.599 |
RhlA (Uniprot ID: Q51559, PDB ID: 8IK2) is a key enzyme involved in synthesizing the hydrophobic component of rhamnolipids. The enzyme determines the length and unsaturation of the fatty acid chains, which ultimately influences the physicochemical properties and bioactivity of rhamnolipids.
Modifying RhlA allows better control over the structure of the fatty acid chains, leading to an improved yield of rhamnolipids and enhanced potential for industrial and pharmaceutical applications.
Saprot_CAPE_dataset_train.csv
Saprot_CAPE_dataset_test.csv