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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
Veryan Codd1, Christopher P. Nelson1, Eva Albrecht, Massimo Mangino2, Joris Deelen3, Jessica L. Buxton4, Jouke-Jan Hottenga5, Krista Fischer6, Tõnu Esko6, Ida Surakka7, Linda Broer, Dale R. Nyholt8, Irene Mateo Leach9, Perttu Salo, Sara Hägg10, Mary K. Matthews1, Jutta Palmen11, Giuseppe Danilo Norata, Paul F. O'Reilly4, Danish Saleheen12, Najaf Amin13, Anthony J. Balmforth14, Marian Beekman3, Rudolf A. de Boer9, Stefan Böhringer3, Peter S. Braund1, Paul Burton1, Anton J. M. de Craen3, Matthew Denniff1, Yanbin Dong15, Konstantinos Douroudis6, Elena Dubinina1, Johan G. Eriksson, Katia Garlaschelli, Dehuang Guo15, Anna-Liisa Hartikainen16, Anjali K. Henders8, Jeanine J. Houwing-Duistermaat3, Laura Kananen7, Lennart C. Karssen13, Johannes Kettunen7, Norman Klopp, Vasiliki Lagou17, Elisabeth M. van Leeuwen13, Pamela A. F. Madden18, Reedik Mägi6, Patrik K. E. Magnusson10, Satu Männistö19, Satu Männistö20, Mark I. McCarthy17, Mark I. McCarthy21, Mark I. McCarthy22, Sarah E. Medland8, Evelin Mihailov6, Grant W. Montgomery8, Ben A. Oostra13, Aarno Palotie, Annette Peters, Helen Pollard1, Anneli Pouta19, Anneli Pouta16, Inga Prokopenko17, Samuli Ripatti, Veikko Salomaa20, Veikko Salomaa19, H. Eka D. Suchiman3, Ana M. Valdes2, Niek Verweij9, Ana Viñuela2, Xiaoling Wang23, Xiaoling Wang24, H-Erich Wichmann25, Elisabeth Widen7, Gonneke Willemsen5, Margaret J. Wright8, Kai Xia26, Xiangjun Xiao27, Dirk J. van Veldhuisen9, Alberico L. Catapano28, Martin D. Tobin1, Alistair S. Hall14, Alexandra I. F. Blakemore4, Wiek H. van Gilst9, Haidong Zhu23, Haidong Zhu24, Jeanette Erdmann, Muredach P. Reilly29, Sekar Kathiresan30, Sekar Kathiresan31, Heribert Schunkert, Philippa J. Talmud11, Nancy L. Pedersen10, Markus Perola7, Markus Perola6, Markus Perola19, Willem H. Ouwehand, Jaakko Kaprio, Nicholas G. Martin8, Cornelia M. van Duijn, Iiris Hovatta19, Iiris Hovatta7, Christian Gieger11, Andres Metspalu6, Dorret I. Boomsma5, Marjo-Riitta Järvelin, P. Eline Slagboom3, John R Thompson1, Tim D. Spector2, Pim van der Harst1, Nilesh J. Samani32, Nilesh J. Samani1 
TL;DR: In this paper, a genome-wide meta-analysis of 37,684 individuals with replication of selected variants in an additional 10,739 individuals was carried out to identify seven loci, including five new loci associated with mean leukocyte telomere length (LTL) (P < 5 × 10−8).
Abstract: Interindividual variation in mean leukocyte telomere length (LTL) is associated with cancer and several age-associated diseases. We report here a genome-wide meta-analysis of 37,684 individuals with replication of selected variants in an additional 10,739 individuals. We identified seven loci, including five new loci, associated with mean LTL (P < 5 × 10(-8)). Five of the loci contain candidate genes (TERC, TERT, NAF1, OBFC1 and RTEL1) that are known to be involved in telomere biology. Lead SNPs at two loci (TERC and TERT) associate with several cancers and other diseases, including idiopathic pulmonary fibrosis. Moreover, a genetic risk score analysis combining lead variants at all 7 loci in 22,233 coronary artery disease cases and 64,762 controls showed an association of the alleles associated with shorter LTL with increased risk of coronary artery disease (21% (95% confidence interval, 5-35%) per standard deviation in LTL, P = 0.014). Our findings support a causal role of telomere-length variation in some age-related diseases.

703 citations

Journal ArticleDOI
09 Jun 2016-Nature
TL;DR: In this article, the authors analyse genome-wide data from 51 Eurasians from ~45,000-7,000 years ago and find that the proportion of Neanderthal DNA decreased from 3-6% to around 2%, consistent with natural selection against Neanderthal variants in modern humans.
Abstract: Modern humans arrived in Europe ~45,000 years ago, but little is known about their genetic composition before the start of farming ~8,500 years ago. Here we analyse genome-wide data from 51 Eurasians from ~45,000-7,000 years ago. Over this time, the proportion of Neanderthal DNA decreased from 3-6% to around 2%, consistent with natural selection against Neanderthal variants in modern humans. Whereas there is no evidence of the earliest modern humans in Europe contributing to the genetic composition of present-day Europeans, all individuals between ~37,000 and ~14,000 years ago descended from a single founder population which forms part of the ancestry of present-day Europeans. An ~35,000-year-old individual from northwest Europe represents an early branch of this founder population which was then displaced across a broad region, before reappearing in southwest Europe at the height of the last Ice Age ~19,000 years ago. During the major warming period after ~14,000 years ago, a genetic component related to present-day Near Easterners became widespread in Europe. These results document how population turnover and migration have been recurring themes of European prehistory.

702 citations

Journal ArticleDOI
TL;DR: It is demonstrated that increased representation of bacteria belonging to the Bacteroidetes phylum is correlated with resistance to the development of checkpoint-blockade-induced colitis, and a paucity of genetic pathways involved in polyamine transport and B vitamin biosynthesis is associated with an increased risk of colitis.
Abstract: The composition of the intestinal microbiota influences the development of inflammatory disorders. However, associating inflammatory diseases with specific microbial members of the microbiota is challenging, because clinically detectable inflammation and its treatment can alter the microbiota's composition. Immunologic checkpoint blockade with ipilimumab, a monoclonal antibody that blocks cytotoxic T-lymphocyte-associated antigen-4 (CTLA-4) signalling, is associated with new-onset, immune-mediated colitis. Here we conduct a prospective study of patients with metastatic melanoma undergoing ipilimumab treatment and correlate the pre-inflammation faecal microbiota and microbiome composition with subsequent colitis development. We demonstrate that increased representation of bacteria belonging to the Bacteroidetes phylum is correlated with resistance to the development of checkpoint-blockade-induced colitis. Furthermore, a paucity of genetic pathways involved in polyamine transport and B vitamin biosynthesis is associated with an increased risk of colitis. Identification of these biomarkers may enable interventions to reduce the risk of inflammatory complications following cancer immunotherapy.

701 citations

Journal ArticleDOI
TL;DR: There are highlights of four emerging areas in the field of drug delivery: systemic RNA delivery, drug delivery for localized therapy, oral drug delivery systems, and biologic drugDelivery systems, where the barriers to effective drug delivery as well as chemical and materials advances are presented.
Abstract: Medicine relies on the use of pharmacologically active agents (drugs) to manage and treat disease. However, drugs are not inherently effective; the benefit of a drug is directly related to the manner by which it is administered or delivered. Drug delivery can affect drug pharmacokinetics, absorption, distribution, metabolism, duration of therapeutic effect, excretion, and toxicity. As new therapeutics (e.g., biologics) are being developed, there is an accompanying need for improved chemistries and materials to deliver them to the target site in the body, at a therapeutic concentration, and for the required period of time. In this Perspective, we provide an historical overview of drug delivery and controlled release followed by highlights of four emerging areas in the field of drug delivery: systemic RNA delivery, drug delivery for localized therapy, oral drug delivery systems, and biologic drug delivery systems. In each case, we present the barriers to effective drug delivery as well as chemical and mater...

701 citations

Journal ArticleDOI
TL;DR: A comparison of the strongest associations with the genome-wide scan of 1868 patients with BP disorder and 2938 controls who completed the scan as part of the Wellcome Trust Case–Control Consortium indicates concordant signals for SNPs within the voltage-dependent calcium channel, L-type, alpha 1C subunit (CACNA1C) gene.
Abstract: We performed a genome-wide association scan in 1461 patients with bipolar (BP) 1 disorder, 2008 controls drawn from the Systematic Treatment Enhancement Program for Bipolar Disorder and the University College London sample collections with successful genotyping for 372,193 single nucleotide polymorphisms (SNPs). Our strongest single SNP results are found in myosin5B (MYO5B; P=1.66 x 10(-7)) and tetraspanin-8 (TSPAN8; P=6.11 x 10(-7)). Haplotype analysis further supported single SNP results highlighting MYO5B, TSPAN8 and the epidermal growth factor receptor (MYO5B; P=2.04 x 10(-8), TSPAN8; P=7.57 x 10(-7) and EGFR; P=8.36 x 10(-8)). For replication, we genotyped 304 SNPs in family-based NIMH samples (n=409 trios) and University of Edinburgh case-control samples (n=365 cases, 351 controls) that did not provide independent replication after correction for multiple testing. A comparison of our strongest associations with the genome-wide scan of 1868 patients with BP disorder and 2938 controls who completed the scan as part of the Wellcome Trust Case-Control Consortium indicates concordant signals for SNPs within the voltage-dependent calcium channel, L-type, alpha 1C subunit (CACNA1C) gene. Given the heritability of BP disorder, the lack of agreement between studies emphasizes that susceptibility alleles are likely to be modest in effect size and require even larger samples for detection.

700 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