Abstract Background Discovery of cancer drivers is a major goal of cancer research. Driver genes and pathways are often predicted using mutation frequency, assuming that statistically significant recurrence of specific somatic mutations across independent samples indicates their importance in cancer. However, many mutations, including known cancer drivers, are not observed at high frequency. Fortunately, abundant information is available about functional “active sites” in proteins that can be integrated with mutations to predict cancer driver genes, even based on low frequency mutations. Further, considering active site information predicts detailed biochemical mechanisms impacted by the mutati...
Driver mutations are the genetic variants responsible for oncogenesis, but how specific somatic muta...
Protein ubiquitination is a dynamic and reversible process of adding single ubiquitin molecules or v...
Carcinogenesis and neoplastic progression are mediated by the accumulation of somatic mutations. Her...
Abstract Background Discovery of cancer drivers is a ...
Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutations ...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
Background: Recent advances in sequencing technologies enable the large-scale identification of gene...
BACKGROUND: Current large-scale cancer sequencing projects have identified large numbers of somatic ...
Cancer genome sequencing has shown that driver genes can often be distinguished not only by the elev...
Motivation: Coding-region mutations in human genes are responsible for a diverse spectrum of disease...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
Driver mutations are the genetic variants responsible for oncogenesis, but how specific somatic muta...
Protein ubiquitination is a dynamic and reversible process of adding single ubiquitin molecules or v...
Carcinogenesis and neoplastic progression are mediated by the accumulation of somatic mutations. Her...
Abstract Background Discovery of cancer drivers is a ...
Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutations ...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
Background: Recent advances in sequencing technologies enable the large-scale identification of gene...
BACKGROUND: Current large-scale cancer sequencing projects have identified large numbers of somatic ...
Cancer genome sequencing has shown that driver genes can often be distinguished not only by the elev...
Motivation: Coding-region mutations in human genes are responsible for a diverse spectrum of disease...
<p>Large-scale tumor genome sequencing projects have revealed a complex landscape of genomic mutatio...
Driver mutations are the genetic variants responsible for oncogenesis, but how specific somatic muta...
Protein ubiquitination is a dynamic and reversible process of adding single ubiquitin molecules or v...
Carcinogenesis and neoplastic progression are mediated by the accumulation of somatic mutations. Her...