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Showing 1–50 of 581 results
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  • Theoretical physicist, inspired and inspiring teacher.

    • P. James E. Peebles
    • William G. Unruh
    News & Views
    Nature
    Volume: 453, P: 50
  • Analyses of 2,658 whole genomes across 38 types of cancer identify the contribution of non-coding point mutations and structural variants to driving cancer.

    • Esther Rheinbay
    • Morten Muhlig Nielsen
    • Christian von Mering
    ResearchOpen Access
    Nature
    Volume: 578, P: 102-111
  • Bond et al. predict mechanism of action of hit compounds from a pooled screen of Mycobacterium tuberculosis mutants underproducing essential proteins by comparing the strain-specific responses of screening hits to those elicited by known antimicrobials.

    • Austin N. Bond
    • Marek Orzechowski
    • Deborah T. Hung
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-16
  • The flagship paper of the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes Consortium describes the generation of the integrative analyses of 2,658 cancer whole genomes and their matching normal tissues across 38 tumour types, the structures for international data sharing and standardized analyses, and the main scientific findings from across the consortium studies.

    • Lauri A. Aaltonen
    • Federico Abascal
    • Christian von Mering
    ResearchOpen Access
    Nature
    Volume: 578, P: 82-93
  • Understanding deregulation of biological pathways in cancer can provide insight into disease etiology and potential therapies. Here, as part of the PanCancer Analysis of Whole Genomes (PCAWG) consortium, the authors present pathway and network analysis of 2583 whole cancer genomes from 27 tumour types.

    • Matthew A. Reyna
    • David Haan
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-17
  • With the generation of large pan-cancer whole-exome and whole-genome sequencing projects, a question remains about how comparable these datasets are. Here, using The Cancer Genome Atlas samples analysed as part of the Pan-Cancer Analysis of Whole Genomes project, the authors explore the concordance of mutations called by whole exome sequencing and whole genome sequencing techniques.

    • Matthew H. Bailey
    • William U. Meyerson
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-27
  • The characterization of 4,645 whole-genome and 19,184 exome sequences, covering most types of cancer, identifies 81 single-base substitution, doublet-base substitution and small-insertion-and-deletion mutational signatures, providing a systematic overview of the mutational processes that contribute to cancer development.

    • Ludmil B. Alexandrov
    • Jaegil Kim
    • Christian von Mering
    ResearchOpen Access
    Nature
    Volume: 578, P: 94-101
  • Analysis of cancer genome sequencing data has enabled the discovery of driver mutations. Here, as part of the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium the authors present DriverPower, a software package that identifies coding and non-coding driver mutations within cancer whole genomes via consideration of mutational burden and functional impact evidence.

    • Shimin Shuai
    • Federico Abascal
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-12
  • Multi-omics datasets pose major challenges to data interpretation and hypothesis generation owing to their high-dimensional molecular profiles. Here, the authors develop ActivePathways method, which uses data fusion techniques for integrative pathway analysis of multi-omics data and candidate gene discovery.

    • Marta Paczkowska
    • Jonathan Barenboim
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-16
  • Creators of software widely used in computational biology discuss the factors that contributed to their success

    • Stephen Altschul
    • Barry Demchak
    • Cole Trapnell
    Special Features
    Nature Biotechnology
    Volume: 31, P: 894-897
  • A study reports whole-genome sequences for 490,640 participants from the UK Biobank and combines these data with phenotypic data to provide new insights into the relationship between human variation and sequence variation.

    • Keren Carss
    • Bjarni V. Halldorsson
    • Ole Schulz-Trieglaff
    ResearchOpen Access
    Nature
    Volume: 645, P: 692-701
  • Claudia Langenberg, James Meigs and colleagues apply a joint meta-analysis approach that accounts for differences in body mass index to identify variants associated with glycemic traits. They report six new loci associated with fasting insulin levels and provide insights into the genetic basis of insulin resistance.

    • Alisa K Manning
    • Marie-France Hivert
    • Claudia Langenberg
    Research
    Nature Genetics
    Volume: 44, P: 659-669
  • New Zealand implemented stringent COVID-19 control measures early after identification of its first case. Here, the authors perform whole genome sequencing of samples taken until 22 May 2020 and find high viral diversity indicative of multiple separate introductions and limited community transmission.

    • Jemma L. Geoghegan
    • Xiaoyun Ren
    • Joep de Ligt
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-7
  • Here the authors analyse rare coding variants to identify schizophrenia risk genes. Associations are reported at exome-wide significance for STAG1 and ZNF136, and at a false discovery rate of 5% for SLC6A1, PCLO, ZMYND11, BSCL2, KLC1 and CGREF1.

    • Sophie L. Chick
    • Peter Holmans
    • Elliott Rees
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-9
  • Pulmonary hypertension and congestive right heart failure afflict some cattle living at high altitude in an autosomal dominant pattern, yet no responsible genes have been identified. Here Newman et al.use whole-exome sequencing to identify variants in the hypoxia inducible factor gene, EPAS1.

    • John H. Newman
    • Timothy N. Holt
    • Rizwan Hamid
    ResearchOpen Access
    Nature Communications
    Volume: 6, P: 1-5
  • A global network of researchers was formed to investigate the role of human genetics in SARS-CoV-2 infection and COVID-19 severity; this paper reports 13 genome-wide significant loci and potentially actionable mechanisms in response to infection.

    • Mari E. K. Niemi
    • Juha Karjalainen
    • Chloe Donohue
    ResearchOpen Access
    Nature
    Volume: 600, P: 472-477
  • A meta-analysis of genome-wide association studies of type 2 diabetes (T2D) identifies more than 600 T2D-associated loci; integrating physiological trait and single-cell chromatin accessibility data at these loci sheds light on heterogeneity within the T2D phenotype.

    • Ken Suzuki
    • Konstantinos Hatzikotoulas
    • Eleftheria Zeggini
    ResearchOpen Access
    Nature
    Volume: 627, P: 347-357
  • Whole-genome sequencing data for 2,778 cancer samples from 2,658 unique donors across 38 cancer types is used to reconstruct the evolutionary history of cancer, revealing that driver mutations can precede diagnosis by several years to decades.

    • Moritz Gerstung
    • Clemency Jolly
    • Christian von Mering
    ResearchOpen Access
    Nature
    Volume: 578, P: 122-128
  • The authors present SVclone, a computational method for inferring the cancer cell fraction of structural variants from whole-genome sequencing data.

    • Marek Cmero
    • Ke Yuan
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-15
  • Cancers evolve as they progress under differing selective pressures. Here, as part of the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium, the authors present the method TrackSig the estimates evolutionary trajectories of somatic mutational processes from single bulk tumour data.

    • Yulia Rubanova
    • Ruian Shi
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-12
  • Transfer of mobile genetic elements between bacteria is widespread, facilitating adaptation. Here, the authors show that horizontal gene transfer is inhibited in soil bacterial communities undergoing positive selection for mercury resistance.

    • James P. J. Hall
    • David Williams
    • Michael A. Brockhurst
    Research
    Nature Ecology & Evolution
    Volume: 1, P: 1348-1353
  • The sensitivity of mesothelioma to the treatment of immune checkpoint blockade remains elusive. Here this group reports a double blind, placebo-controlled, randomized phase III trial of PD1 inhibitor (Nivolumab) on 332 patients with relapsed mesothelioma, and to uncover determinants of efficacy.

    • Dean A. Fennell
    • Kayleigh Hill
    • Gareth O. Griffiths
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-13
  • Here, Isaacs, Nieto and Zhang et al. discover a potent nanobody and engineer a dual-action antibody that targets two viral proteins, offering strong protection against Nipah and Hendra viruses while preventing viral escape, potentially contributing to future treatments.

    • Ariel Isaacs
    • Guillermo Valenzuela Nieto
    • Daniel Watterson
    Research
    Nature Structural & Molecular Biology
    Volume: 32, P: 1920-1931
  • In somatic cells the mechanisms maintaining the chromosome ends are normally inactivated; however, cancer cells can re-activate these pathways to support continuous growth. Here, the authors characterize the telomeric landscapes across tumour types and identify genomic alterations associated with different telomere maintenance mechanisms.

    • Lina Sieverling
    • Chen Hong
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-13
  • Whole-genome sequencing data from more than 2,500 cancers of 38 tumour types reveal 16 signatures that can be used to classify somatic structural variants, highlighting the diversity of genomic rearrangements in cancer.

    • Yilong Li
    • Nicola D. Roberts
    • Christian von Mering
    ResearchOpen Access
    Nature
    Volume: 578, P: 112-121
  • In this study the authors consider the structural variants (SVs) present within cancer cases of the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium. They report hundreds of genes, including known cancer-associated genes for which the nearby presence of a SV breakpoint is associated with altered expression.

    • Yiqun Zhang
    • Fengju Chen
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-14
  • A chromosome-level genome assembly for the Ninu (greater bilby) and genome sequences for the extinct Yallara (lesser bilby), together with resequenced genomes, shed light on the demographic history of Ninu and inform conservation plans for this culturally and ecologically important marsupial.

    • Carolyn J. Hogg
    • Richard J. Edwards
    • Katherine Belov
    ResearchOpen Access
    Nature Ecology & Evolution
    Volume: 8, P: 1311-1326
  • Whole-genome sequencing of 962 clear cell renal cell carcinomas from 11 countries shows geographic variations in somatic mutation profiles, including a mutational signature of unknown cause in 70% of cases from Japan.

    • Sergey Senkin
    • Sarah Moody
    • Paul Brennan
    ResearchOpen Access
    Nature
    Volume: 629, P: 910-918
  • A trans-ancestry meta-analysis of GWAS of glycemic traits in up to 281,416 individuals identifies 99 novel loci, of which one quarter was found due to the multi-ancestry approach, which also improves fine-mapping of credible variant sets.

    • Ji Chen
    • Cassandra N. Spracklen
    • Cornelia van Duijn
    Research
    Nature Genetics
    Volume: 53, P: 840-860
  • Using data from a single time point, passenger-approximated clonal expansion rate (PACER) estimates the fitness of common driver mutations that lead to clonal haematopoiesis and identifies TCL1A activation as a mediator of clonal expansion.

    • Joshua S. Weinstock
    • Jayakrishnan Gopakumar
    • Siddhartha Jaiswal
    Research
    Nature
    Volume: 616, P: 755-763
  • It is unclear whether somatic mutation rates are elevated in Lynch Syndrome (LS), which is the most common cause of hereditary colorectal cancer. Here, the authors use whole-genome sequencing and organoid cultures to show that normal tissues in LS patients are genomically stable, while ancestor cells of neoplastic tissues undergo multiple cycles of clonal evolution.

    • Bernard C. H. Lee
    • Philip S. Robinson
    • Michael R. Stratton
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-10