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Institution

Broad Institute

NonprofitCambridge, Massachusetts, United States
About: Broad Institute is a nonprofit organization based out in Cambridge, Massachusetts, United States. It is known for research contribution in the topics: Population & Genome-wide association study. The organization has 6584 authors who have published 11618 publications receiving 1522743 citations. The organization is also known as: Eli and Edythe L. Broad Institute of MIT and Harvard.


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Journal ArticleDOI
TL;DR: The improved MitoCarta 2.0 inventory provides a molecular framework for system-level analysis of mammalian mitochondria and helps to understand mitochondrial pathways in health and disease.
Abstract: Mitochondria are complex organelles that house essential pathways involved in energy metabolism, ion homeostasis, signalling and apoptosis. To understand mitochondrial pathways in health and disease, it is crucial to have an accurate inventory of the organelle's protein components. In 2008, we made substantial progress toward this goal by performing in-depth mass spectrometry of mitochondria from 14 organs, epitope tagging/microscopy and Bayesian integration to assemble MitoCarta (www.broadinstitute.org/pubs/MitoCarta): an inventory of genes encoding mitochondrial-localized proteins and their expression across 14 mouse tissues. Using the same strategy we have now reconstructed this inventory separately for human and for mouse based on (i) improved gene transcript models, (ii) updated literature curation, including results from proteomic analyses of mitochondrial sub-compartments, (iii) improved homology mapping and (iv) updated versions of all seven original data sets. The updated human MitoCarta2.0 consists of 1158 human genes, including 918 genes in the original inventory as well as 240 additional genes. The updated mouse MitoCarta2.0 consists of 1158 genes, including 967 genes in the original inventory plus 191 additional genes. The improved MitoCarta 2.0 inventory provides a molecular framework for system-level analysis of mammalian mitochondria.

1,097 citations

Journal ArticleDOI
TL;DR: The data indicate that the FTO allele associated with obesity represses mitochondrial thermogenesis in adipocyte precursor cells in a tissue-autonomous manner, and points to a pathway for adipocyte thermogenesis regulation involving ARID5B, rs1421085, IRX3, and IRX5, which, when manipulated, had pronounced pro-obesity and anti-ob obesity effects.
Abstract: BackgroundGenomewide association studies can be used to identify disease-relevant genomic regions, but interpretation of the data is challenging The FTO region harbors the strongest genetic association with obesity, yet the mechanistic basis of this association remains elusive MethodsWe examined epigenomic data, allelic activity, motif conservation, regulator expression, and gene coexpression patterns, with the aim of dissecting the regulatory circuitry and mechanistic basis of the association between the FTO region and obesity We validated our predictions with the use of directed perturbations in samples from patients and from mice and with endogenous CRISPR–Cas9 genome editing in samples from patients ResultsOur data indicate that the FTO allele associated with obesity represses mitochondrial thermogenesis in adipocyte precursor cells in a tissue-autonomous manner The rs1421085 T-to-C single-nucleotide variant disrupts a conserved motif for the ARID5B repressor, which leads to derepression of a pot

1,097 citations

Journal ArticleDOI
TL;DR: Analysis of the tumour immune microenvironment in the context of anti-PD-1 therapy in two fully immunocompetent mouse models of lung adenocarcinoma suggests that upregulation of TIM-3 and other immune checkpoints may be targetable biomarkers associated with adaptive resistance to PD-1 blockade.
Abstract: Despite compelling antitumour activity of antibodies targeting the programmed death 1 (PD-1): programmed death ligand 1 (PD-L1) immune checkpoint in lung cancer, resistance to these therapies has increasingly been observed. In this study, to elucidate mechanisms of adaptive resistance, we analyse the tumour immune microenvironment in the context of anti-PD-1 therapy in two fully immunocompetent mouse models of lung adenocarcinoma. In tumours progressing following response to anti-PD-1 therapy, we observe upregulation of alternative immune checkpoints, notably T-cell immunoglobulin mucin-3 (TIM-3), in PD-1 antibody bound T cells and demonstrate a survival advantage with addition of a TIM-3 blocking antibody following failure of PD-1 blockade. Two patients who developed adaptive resistance to anti-PD-1 treatment also show a similar TIM-3 upregulation in blocking antibody-bound T cells at treatment failure. These data suggest that upregulation of TIM-3 and other immune checkpoints may be targetable biomarkers associated with adaptive resistance to PD-1 blockade.

1,095 citations

Journal ArticleDOI
Sekar Kathiresan1, Benjamin F. Voight1, Shaun Purcell2, Kiran Musunuru1, Diego Ardissino, Pier Mannuccio Mannucci3, Sonia S. Anand4, James C. Engert5, Nilesh J. Samani6, Heribert Schunkert7, Jeanette Erdmann7, Muredach P. Reilly8, Daniel J. Rader8, Thomas M. Morgan9, John A. Spertus10, Monika Stoll11, Domenico Girelli12, Pascal P. McKeown13, Christopher Patterson13, David S. Siscovick14, Christopher J. O'Donnell15, Roberto Elosua, Leena Peltonen16, Veikko Salomaa17, Stephen M. Schwartz14, Olle Melander18, David Altshuler1, Pier Angelica Merlini, Carlo Berzuini19, Luisa Bernardinelli19, Flora Peyvandi3, Marco Tubaro, Patrizia Celli, Maurizio Ferrario, Raffaela Fetiveau, Nicola Marziliano, Giorgio Casari20, Michele Galli, Flavio Ribichini12, Marco Rossi, Francesco Bernardi21, Pietro Zonzin, Alberto Piazza22, Jean Yee14, Yechiel Friedlander23, Jaume Marrugat, Gavin Lucas, Isaac Subirana, Joan Sala24, Rafael Ramos, James B. Meigs1, Gordon H. Williams1, David M. Nathan1, Calum A. MacRae1, Aki S. Havulinna17, Göran Berglund18, Joel N. Hirschhorn1, Rosanna Asselta, Stefano Duga, Marta Spreafico25, Mark J. Daly1, James Nemesh2, Joshua M. Korn1, Steven A. McCarroll1, Aarti Surti2, Candace Guiducci2, Lauren Gianniny2, Daniel B. Mirel2, Melissa Parkin2, Noël P. Burtt2, Stacey Gabriel2, John R. Thompson6, Peter S. Braund6, Benjamin J. Wright6, Anthony J. Balmforth26, Stephen G. Ball26, Alistair S. Hall26, Patrick Linsel-Nitschke7, Wolfgang Lieb7, Andreas Ziegler7, Inke R. König7, Christian Hengstenberg27, Marcus Fischer27, Klaus Stark27, Anika Grosshennig7, Michael Preuss7, H-Erich Wichmann28, Stefan Schreiber29, Willem H. Ouwehand19, Panos Deloukas30, Michael Scholz, François Cambien31, Mingyao Li8, Zhen Chen8, Robert L. Wilensky8, William H. Matthai8, Atif Qasim8, Hakon Hakonarson8, Joe Devaney32, Mary-Susan Burnett32, Augusto D. Pichard32, Kenneth M. Kent32, Lowell F. Satler32, Joseph M. Lindsay32, Ron Waksman32, Stephen E. Epstein32, Thomas Scheffold, Klaus Berger11, Andreas Huge11, Nicola Martinelli12, Oliviero Olivieri12, Roberto Corrocher12, Hilma Holm33, Gudmar Thorleifsson33, Unnur Thorsteinsdottir34, Kari Stefansson34, Ron Do5, Changchun Xie4, David S. Siscovick14 
TL;DR: SNPs at nine loci were reproducibly associated with myocardial infarction, but tests of common and rare CNVs failed to identify additional associations with my Cardiovascular Infarction risk.
Abstract: We conducted a genome-wide association study testing single nucleotide polymorphisms (SNPs) and copy number variants (CNVs) for association with early-onset myocardial infarction in 2,967 cases and 3,075 controls We carried out replication in an independent sample with an effective sample size of up to 19,492 SNPs at nine loci reached genome-wide significance: three are newly identified (21q22 near MRPS6-SLC5A3-KCNE2, 6p24 in PHACTR1 and 2q33 in WDR12) and six replicated prior observations1, 2, 3, 4 (9p21, 1p13 near CELSR2-PSRC1-SORT1, 10q11 near CXCL12, 1q41 in MIA3, 19p13 near LDLR and 1p32 near PCSK9) We tested 554 common copy number polymorphisms (>1% allele frequency) and none met the pre-specified threshold for replication (P < 10-3) We identified 8,065 rare CNVs but did not detect a greater CNV burden in cases compared to controls, in genes compared to the genome as a whole, or at any individual locus SNPs at nine loci were reproducibly associated with myocardial infarction, but tests of common and rare CNVs failed to identify additional associations with myocardial infarction risk

1,092 citations

Journal ArticleDOI
Eli A. Stahl1, Eli A. Stahl2, Gerome Breen3, Andreas J. Forstner  +339 moreInstitutions (107)
TL;DR: Genome-wide analysis identifies 30 loci associated with bipolar disorder, allowing for comparisons of shared genes and pathways with other psychiatric disorders, including schizophrenia and depression.
Abstract: Bipolar disorder is a highly heritable psychiatric disorder. We performed a genome-wide association study (GWAS) including 20,352 cases and 31,358 controls of European descent, with follow-up analysis of 822 variants with P < 1 × 10-4 in an additional 9,412 cases and 137,760 controls. Eight of the 19 variants that were genome-wide significant (P < 5 × 10-8) in the discovery GWAS were not genome-wide significant in the combined analysis, consistent with small effect sizes and limited power but also with genetic heterogeneity. In the combined analysis, 30 loci were genome-wide significant, including 20 newly identified loci. The significant loci contain genes encoding ion channels, neurotransmitter transporters and synaptic components. Pathway analysis revealed nine significantly enriched gene sets, including regulation of insulin secretion and endocannabinoid signaling. Bipolar I disorder is strongly genetically correlated with schizophrenia, driven by psychosis, whereas bipolar II disorder is more strongly correlated with major depressive disorder. These findings address key clinical questions and provide potential biological mechanisms for bipolar disorder.

1,090 citations


Authors

Showing all 7146 results

NameH-indexPapersCitations
Eric S. Lander301826525976
Albert Hofman2672530321405
Frank B. Hu2501675253464
David J. Hunter2131836207050
Kari Stefansson206794174819
Mark J. Daly204763304452
Lewis C. Cantley196748169037
Matthew Meyerson194553243726
Gad Getz189520247560
Stacey Gabriel187383294284
Stuart H. Orkin186715112182
Ralph Weissleder1841160142508
Chris Sander178713233287
Michael I. Jordan1761016216204
Richard A. Young173520126642
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202337
2022627
20211,727
20201,534
20191,364
20181,107