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Bonnie Berger

Researcher at Massachusetts Institute of Technology

Publications -  374
Citations -  29195

Bonnie Berger is an academic researcher from Massachusetts Institute of Technology. The author has contributed to research in topics: Genome & Computer science. The author has an hindex of 71, co-authored 359 publications receiving 23613 citations. Previous affiliations of Bonnie Berger include Boston College & Boston University.

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SARS-CoV-2 Receptor ACE2 Is an Interferon-Stimulated Gene in Human Airway Epithelial Cells and Is Detected in Specific Cell Subsets across Tissues.

Carly G. K. Ziegler, +135 more
- 28 May 2020 - 
TL;DR: The data suggest that SARS-CoV-2 could exploit species-specific interferon-driven upregulation of ACE2, a tissue-protective mediator during lung injury, to enhance infection.
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Identification of Functional Elements and Regulatory Circuits by Drosophila modENCODE

Sushmita Roy, +95 more
- 24 Dec 2010 - 
TL;DR: The Drosophila Encyclopedia of DNA Elements (modENCODE) project as mentioned in this paper has been used to map transcripts, histone modifications, chromosomal proteins, transcription factors, replication proteins and intermediates, and nucleosome properties across a developmental time course and in multiple cell lines.
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Ancient human genomes suggest three ancestral populations for present-day Europeans

Iosif Lazaridis, +136 more
- 18 Sep 2014 - 
TL;DR: It is shown that most present-day Europeans derive from at least three highly differentiated populations: west European hunter-gatherers, who contributed ancestry to all Europeans but not to Near Easterners; ancient north Eurasians related to Upper Palaeolithic Siberians; and early European farmers, who were mainly of Near Eastern origin but also harboured west Europeanhunter-gatherer related ancestry.
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MultiCoil: A program for predicting two‐and three‐stranded coiled coils

TL;DR: A new multidimensional scoring approach for identifying and distinguishing trimeric and dimeric coiled coils is implemented in the MultiCoil program, which extends the two‐stranded coiled‐coil prediction program PairCoil to the identification of three‐stranding coiled Coil.