Accurate methods to assess the pathogenicity of mutations are needed to fully leverage the possibilities of genome sequencing in diagnosis. Current data-driven and bioinformatics approaches are, however, limited by the large number of new variations found in each newly sequenced genome, and often do not provide direct mechanistic insight. Here we demonstrate, for the first time, that saturation mutagenesis, biophysical modeling and co-variation analysis, performed in silico, can predict the abundance, metabolic stability, and function of proteins inside living cells. As a model system, we selected the human mismatch repair protein, MSH2, where missense variants are known to cause the hereditary cancer predisposition disease, known as Lynch ...
Purpose: Variants in the DNA mismatch repair (MMR) gene MSH6, identified in individuals suspected of...
Despite interest in associating polymorphisms with clinical or experimental phenotypes, functional i...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...
Accurate methods to assess the pathogenicity of mutations are needed to fully leverage the possibili...
Item does not contain fulltextBACKGROUND: Lynch syndrome, an autosomal-dominant disorder characteris...
With the discovery that the hereditary cancer susceptibility disease Lynch syndrome (LS) is caused b...
© 2021 Stephanie PortelliWhole genome sequencing approaches proved pivotal to modern medicine throug...
Large scale genome sequencing allowed the identification of a massive number of genetic variations, ...
MOTIVATION: High-throughput sequencing platforms are increasingly used to screen patients with genet...
Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a v...
We have investigated the properties of three sets of human missense genetic variations: cancer somat...
Purpose: Lynch syndrome is caused by a germline mutation in a mismatch repair gene, most commonly th...
Context: Lynch syndrome is caused primarily by mutations in the mismatch repair genes MLH1 and MSH2....
Lynch syndrome (LS) is a hereditary cancer predisposition caused by inactivating mutations in DNA mi...
Lynch syndrome (LS) predisposes patients to cancer and is caused by germline mutations in the DNA mi...
Purpose: Variants in the DNA mismatch repair (MMR) gene MSH6, identified in individuals suspected of...
Despite interest in associating polymorphisms with clinical or experimental phenotypes, functional i...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...
Accurate methods to assess the pathogenicity of mutations are needed to fully leverage the possibili...
Item does not contain fulltextBACKGROUND: Lynch syndrome, an autosomal-dominant disorder characteris...
With the discovery that the hereditary cancer susceptibility disease Lynch syndrome (LS) is caused b...
© 2021 Stephanie PortelliWhole genome sequencing approaches proved pivotal to modern medicine throug...
Large scale genome sequencing allowed the identification of a massive number of genetic variations, ...
MOTIVATION: High-throughput sequencing platforms are increasingly used to screen patients with genet...
Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a v...
We have investigated the properties of three sets of human missense genetic variations: cancer somat...
Purpose: Lynch syndrome is caused by a germline mutation in a mismatch repair gene, most commonly th...
Context: Lynch syndrome is caused primarily by mutations in the mismatch repair genes MLH1 and MSH2....
Lynch syndrome (LS) is a hereditary cancer predisposition caused by inactivating mutations in DNA mi...
Lynch syndrome (LS) predisposes patients to cancer and is caused by germline mutations in the DNA mi...
Purpose: Variants in the DNA mismatch repair (MMR) gene MSH6, identified in individuals suspected of...
Despite interest in associating polymorphisms with clinical or experimental phenotypes, functional i...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...