Structure-based pathogenicity relationship identifier for predicting effects of single missense variants and discovery of higher-order cancer susceptibility clusters of mutations

Author:

Wang Boshen12,Lei Xue12,Tian Wei12,Perez-Rathke Alan12,Tseng Yan-Yuan34,Liang Jie12

Affiliation:

1. Center for Bioinformatics and Quantitative Biology , Richard and Loan Hill, Department of Biomedical Engineering, , W103 Suite, 820 S Wood St, 60612 IL , USA

2. University of Illinois at Chicago , Richard and Loan Hill, Department of Biomedical Engineering, , W103 Suite, 820 S Wood St, 60612 IL , USA

3. Center for Molecular Medicine and Genetics , Biochemistry and Molecular Biology Department, School of Medicine, , 540 E. Canfield Avenue, 48201MI , USA

4. Wayne State University , Biochemistry and Molecular Biology Department, School of Medicine, , 540 E. Canfield Avenue, 48201MI , USA

Abstract

Abstract We report the structure-based pathogenicity relationship identifier (SPRI), a novel computational tool for accurate evaluation of pathological effects of missense single mutations and prediction of higher-order spatially organized units of mutational clusters. SPRI can effectively extract properties determining pathogenicity encoded in protein structures, and can identify deleterious missense mutations of germ line origin associated with Mendelian diseases, as well as mutations of somatic origin associated with cancer drivers. It compares favorably to other methods in predicting deleterious mutations. Furthermore, SPRI can discover spatially organized pathogenic higher-order spatial clusters (patHOS) of deleterious mutations, including those of low recurrence, and can be used for discovery of candidate cancer driver genes and driver mutations. We further demonstrate that SPRI can take advantage of AlphaFold2 predicted structures and can be deployed for saturation mutation analysis of the whole human proteome.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

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