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      1. Carlos Slim Center for Health Research The Slim Center aims to bring the benefits of genomics-driven medicine to Latin America, gleaning new insights into diseases with relevance to the region.
      2. Gerstner Center for Cancer Diagnostics The Gerstner Center is developing next-generation diagnostic technology for cancer detection and tracking disease progression.
      3. Klarman Cell Observatory The Klarman Cell Observatory is systematically defining mammalian cellular circuits, how they work together to create tissues and organs, and are perturbed to cause disease.
      4. Merkin Institute for Transformative Technologies in Healthcare The Merkin Institute is supporting early-stage ideas aimed at advancing powerful technological approaches for improving how we understand and treat disease.
      5. Novo Nordisk Foundation Center for Genomic Mechanisms of Disease This center is developing new paradigms and technologies to scale the discovery of biological mechanisms of common, complex diseases, by facilitating close collaborations between the Ó³»­´«Ã½ and the Danish research community.
      6. Eric and Wendy Schmidt Center The EWSC is catalyzing a new field of interdisciplinary research at the intersection of data science and life science, aimed at improving human health.
      7. Stanley Center for Psychiatric Research The Stanley Center aims to reduce the burden of serious mental illness by contributing new insights into pathogenesis, identifying biomarkers, and paving the way toward new treatments.
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      1. Art and science connection Explore the connection between art and science and how we bring together artists and Ó³»­´«Ã½ scientists through our artist-in-residence program, gallery exhibitions, and ongoing public conversations.
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Evolution of genes and genomes on the Drosophila phylogeny.
Drosophila 12 Genomes Consortium, Clark AG, Eisen MB, et al. Evolution of genes and genomes on the Drosophila phylogeny. Nature. 2007;450(7167):203-18. doi:10.1038/nature06341
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The mammalian epigenome.
Bernstein BE, Meissner A, Lander ES. The mammalian epigenome. Cell. 2007;128(4):669-81. doi:10.1016/j.cell.2007.01.033
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PEPPeR, a platform for experimental proteomic pattern recognition.
Jaffe JD, Mani DR, Leptos KC, Church GM, Gillette MA, Carr SA. PEPPeR, a platform for experimental proteomic pattern recognition. Mol Cell Proteomics. 2006;5(10):1927-41. doi:10.1074/mcp.M600222-MCP200
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A zebrafish bmyb mutation causes genome instability and increased cancer susceptibility.
Shepard JL, Amatruda JF, Stern HM, et al. A zebrafish bmyb mutation causes genome instability and increased cancer susceptibility. Proc Natl Acad Sci U S A. 2005;102(37):13194-9. doi:10.1073/pnas.0506583102
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Chemical genomics: probing protein function using small molecules.
Wagner BK, Haggarty SJ, Clemons PA. Chemical genomics: probing protein function using small molecules. Am J Pharmacogenomics. 2004;4(5):313-20. http://content.wkhealth.com/linkback/openurl?issn=1175-2203&volume=4&issue=5&spage=313
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Myelin regeneration: a recapitulation of development?
Fancy SPJ, Chan JR, Baranzini SE, Franklin RJM, Rowitch DH. Myelin regeneration: a recapitulation of development?. Annu Rev Neurosci. 2011;34:21-43. doi:10.1146/annurev-neuro-061010-113629
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SIRT3 opposes reprogramming of cancer cell metabolism through HIF1α destabilization.
Finley LWS, Carracedo A, Lee J, et al. SIRT3 opposes reprogramming of cancer cell metabolism through HIF1α destabilization. Cancer Cell. 2011;19(3):416-28. doi:10.1016/j.ccr.2011.02.014
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Evaluation of large scale quantitative proteomic assay development using peptide affinity-based mass spectrometry.
Whiteaker JR, Zhao L, Abbatiello SE, et al. Evaluation of large scale quantitative proteomic assay development using peptide affinity-based mass spectrometry. Mol Cell Proteomics. 2011;10(4):M110.005645. doi:10.1074/mcp.M110.005645
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[Treatment of the respiratory distress syndrome in newborns: smoothened agonist counterbalances deleterious effects of glucocorticoids].
Griveau A. [Treatment of the respiratory distress syndrome in newborns: smoothened agonist counterbalances deleterious effects of glucocorticoids]. Med Sci (Paris). 2012;28(2):141-3. doi:10.1051/medsci/2012282008
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Identifying gnostic predictors of the vaccine response.
Haining N, Pulendran B. Identifying gnostic predictors of the vaccine response. Curr Opin Immunol. 2012;24(3):332-6. doi:10.1016/j.coi.2012.03.010
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In March of 2020, Ó³»­´«Ã½ converted a clinical genetics processing lab into a large-scale COVID-19 testing facility in less than two weeks.

We've screened more than 1,275 cancer cell lines as part of the Cancer Dependency Map (DepMap).

Ó³»­´«Ã½ Genomics Platform sequences a whole human genome every four minutes.

More than 11,000 individuals living with cancer in the United States and Canada have partnered with Count Me In to share their experiences and help accelerate cancer research.

The Drug Repurposing Hub is one of the most comprehensive and up-to-date biologically annotated collections of FDA-approved compounds in the world. Researchers anywhere can explore more than 6,000 drugs in the hub and search for possible new uses for them to jump-start new drug discovery.

In 2021, our sustainability efforts sent more than 80 percent of waste from the Genomics Platform to either a recycling facility or to an incineration plant that generates electricity.

Through Ó³»­´«Ã½'s Scientists in the Classroom program, Ó³»­´«Ã½ researchers visit every 8th grade classroom in Cambridge each year to talk about genetics and evolution.

Every summer, 18 high school students spend six weeks at Ó³»­´«Ã½ working side-by-side with mentors on cutting-edge research.

In November 2022, Ó³»­´«Ã½â€™s Genomics Platform sequenced its 500,000th whole human genome, a mere four years after sequencing its 100,000th.

By the end of 2022, Ó³»­´«Ã½â€™s COVID-19 testing lab had processed more than 37 million tests.

Working with Addgene, Ó³»­´«Ã½ has shared CRISPR genome-editing reagents with researchers at more than 3,200 institutions in 76 countries.

The NeuroGAP-Psychosis project, a collaboration between the Stanley Center for Psychiatric Research and Harvard T.H. Chan School of Public Health to study the genetics of severe mental illness, has recruited more than 42,000 participants in Ethiopia, Kenya, Uganda, and South Africa.

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