The arrangement of amino acids in a protein sequence encodes its native folding. However, the same arrangement in aggregation-prone regions may cause misfolding as a result of local environmental stress. Under normal physiological conditions, such regions congregate in the protein's interior to avoid aggregation and attain the native fold. We have used solvent accessibility of aggregation patches (SAAP(p)) to determine the packing of aggregation-prone residues. Our results showed that SAAP(p) has low values for native crystal structures, consistent with protein folding as a mechanism to minimize the solvent accessibility of aggregation-prone residues. SAAP(p) also shows an average correlation of 0.76 with the global distance test (GDT) score on CASP12 template-based protein models. Using SAAP(p) scores and five structural features, a random forest machine learning quality assessment tool, SAAP-QA, showed 2.32 average GDT loss between best model predicted and actual best based on GDT score on independent CASP test data, with the ability to discriminate native-like folds having an AUC of 0.94. Overall, the Pearson correlation coefficient (PCC) between true and predicted GDT scores on independent CASP data was 0.86 while on the external CAMEO dataset, comprising high quality protein structures, PCC and average GDT loss were 0.71 and 4.46 respectively. SAAP-QA can be used to detect the quality of models and iteratively improve them to native or near-native structures.
Role of solvent accessibility for aggregation-prone patches in protein folding.
溶剂可及性在蛋白质折叠中易聚集区域的作用
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作者:Mishra Avinash, Ranganathan Shoba, Jayaram B, Sattar Abdul
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2018 | 起止号: | 2018 Aug 27; 8(1):12896 |
| doi: | 10.1038/s41598-018-31289-6 | 研究方向: | 免疫/内分泌 |
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