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zadetkov: 52
1.
  • Mutational landscape and si... Mutational landscape and significance across 12 major cancer types
    Kandoth, Cyriac; McLellan, Michael D; Vandin, Fabio ... Nature (London), 10/2013, Letnik: 502, Številka: 7471
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    The Cancer Genome Atlas (TCGA) has used the latest sequencing and analysis methods to identify somatic variants across thousands of tumours. Here we present data and analytical results for point ...
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2.
  • Expanding the computational... Expanding the computational toolbox for mining cancer genomes
    Ding, Li; Wendl, Michael C; McMichael, Joshua F ... Nature reviews. Genetics, 08/2014, Letnik: 15, Številka: 8
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    High-throughput DNA sequencing has revolutionized the study of cancer genomics with numerous discoveries that are relevant to cancer diagnosis and treatment. The latest sequencing and analysis ...
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3.
  • Integration of the Drug–Gen... Integration of the Drug–Gene Interaction Database (DGIdb 4.0) with open crowdsource efforts
    Freshour, Sharon L; Kiwala, Susanna; Cotto, Kelsy C ... Nucleic acids research, 01/2021, Letnik: 49, Številka: D1
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    Abstract The Drug-Gene Interaction Database (DGIdb, www.dgidb.org) is a web resource that provides information on drug-gene interactions and druggable genes from publications, databases, and other ...
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4.
  • Age-related mutations assoc... Age-related mutations associated with clonal hematopoietic expansion and malignancies
    Xie, Mingchao; Lu, Charles; Wang, Jiayin ... Nature medicine, 12/2014, Letnik: 20, Številka: 12
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    Several genetic alterations characteristic of leukemia and lymphoma have been detected in the blood of individuals without apparent hematological malignancies. The Cancer Genome Atlas (TCGA) provides ...
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5.
  • DGIdb 5.0: rebuilding the d... DGIdb 5.0: rebuilding the drug–gene interaction database for precision medicine and drug discovery platforms
    Cannon, Matthew; Stevenson, James; Stahl, Kathryn ... Nucleic acids research, 2024-Jan-05, Letnik: 52, Številka: D1
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    Abstract The Drug–Gene Interaction Database (DGIdb, https://dgidb.org) is a publicly accessible resource that aggregates genes or gene products, drugs and drug–gene interaction records to drive ...
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6.
  • DGIdb 2.0: mining clinicall... DGIdb 2.0: mining clinically relevant drug-gene interactions
    Wagner, Alex H; Coffman, Adam C; Ainscough, Benjamin J ... Nucleic acids research, 01/2016, Letnik: 44, Številka: D1
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    The Drug-Gene Interaction Database (DGIdb, www.dgidb.org) is a web resource that consolidates disparate data sources describing drug-gene interactions and gene druggability. It provides an intuitive ...
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7.
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8.
  • Integrated analysis of geno... Integrated analysis of genomic and transcriptomic data for the discovery of splice-associated variants in cancer
    Cotto, Kelsy C; Feng, Yang-Yang; Ramu, Avinash ... Nature communications, 03/2023, Letnik: 14, Številka: 1
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    Somatic mutations within non-coding regions and even exons may have unidentified regulatory consequences that are often overlooked in analysis workflows. Here we present RegTools ( www.regtools.org ...
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9.
  • Systematic discovery of complex insertions and deletions in human cancers
    Ye, Kai; Wang, Jiayin; Jayasinghe, Reyka ... Nature medicine, 01/2016, Letnik: 22, Številka: 1
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    Complex insertions and deletions (indels) are formed by simultaneously deleting and inserting DNA fragments of different sizes at a common genomic location. Here we present a systematic analysis of ...
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10.
  • The Human Pangenome Project... The Human Pangenome Project: a global resource to map genomic diversity
    Wang, Ting; Antonacci-Fulton, Lucinda; Howe, Kerstin ... Nature (London), 04/2022, Letnik: 604, Številka: 7906
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    The human reference genome is the most widely used resource in human genetics and is due for a major update. Its current structure is a linear composite of merged haplotypes from more than 20 people, ...
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zadetkov: 52

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