Veri seti Açık Erişim

[DATASET] PHACT: Phylogeny-Aware Computing of Tolerance for Missense Mutations

   Kuru, Nurdan; Dereli, Onur; Akkoyun, Emrah; Bircan, Aylin; Tastan, Oznur; Adebali, Ogün

Evolutionary conservation is a fundamental resource for predicting the substitutability of amino acids and the loss of function in proteins. The use of multiple sequence alignment alone—without considering the evolutionary relationships among sequences—results in the redundant counting of evolutionarily related alteration events, as if they were independent. Here, we propose a new method, PHACT, that predicts the pathogenicity of missense mutations directly from the phylogenetic tree of proteins. PHACT travels through the nodes of the phylogenetic tree and evaluates the deleteriousness of a substitution based on the probability differences of ancestral amino acids between neighboring nodes in the tree. Moreover, PHACT assigns weights to each node in the tree based on their distance to the query organism. For each potential amino acid substitution, the algorithm generates a score that is used to calculate the effect of substitution on protein function. To analyze the predictive performance of PHACT, we performed various experiments over the subsets of two datasets that include 3,023 proteins and 61,662 variants in total. The experiments demonstrated that our method outperformed the widely used pathogenicity prediction tools (i.e., SIFT and PolyPhen-2) and achieved a better predictive performance than other conventional statistical approaches presented in dbNSFP. The PHACT source code is available at https://github.com/CompGenomeLab/PHACT.

All data obtained during this study is also shared on the following url. https://phact.sabanciuniv.edu/pubs/kuru_mbe_2022/ All the tools, sw, developed codes is shared on the github page. https://github.com/CompGenomeLab/PHACT Acknowledgement This work was supported by the Health Institutes of Turkey (TUSEB) (Project no: 4587 to O.A.) and EMBO Installation Grant (Project no: 4163 to O.A.) funded by the Scientific and Technological Research Council of Turkey (TÜBİTAK). Most of the numerical calculations reported in this paper were performed at the High Performance and Grid Computing Center (TRUBA resources) of TÜBITAK. The TOSUN cluster at Sabanci University was also used for computational analyses. We also want to thank Nehircan Özdemir for his art illustration of the PHACT approach.
Dosyalar (390.3 kB)
Dosya adı Boyutu
readme.md
md5:e283888b377cb584112da8d802ecf327
390.3 kB İndir
  • Kuru, Nurdan, et al. "PHACT: Phylogeny-aware computing of tolerance for missense mutations." Molecular Biology and Evolution 39.6 (2022): msac114.
536
39
görüntülenme
indirilme
Tüm sürümler Bu sürüm
Görüntülenme 536544
İndirme 3939
Veri hacmi 15.2 MB15.2 MB
Tekil görüntülenme 424430
Tekil indirme 3737

Alıntı yap