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Sharon R. Grossman

Massachusetts Institute of Technology · US
Area of research
Molecular Biology · Genetics
Research interest
Research focused on Enhancer and Computational biology, with related work in Transcription factor, Genetics, Microevolution. Notable publications include 'Activity-by-contact model of enhancer–promoter regulation from thousands of CRISPR perturbations', 'Detecting Natural Selection in Genomic Data', and 'Systematic mapping of functional enhancer–promoter connections with CRISPR interference'.
h-index
citations
4,583
works
13
NIH funding
primary concept
email

Recent publications

Compatibility rules of human enhancer and promoter sequences
Nature 2022cited by 166position: middledoi
Inferring gene regulation from stochastic transcriptional variation across single cells at steady state
Proceedings of the National Academy of Sciences 2022cited by 57position: middledoi
Compatibility logic of human enhancer and promoter sequences
bioRxiv (Cold Spring Harbor Laboratory) 2021cited by 3position: middledoi
Activity-by-contact model of enhancer–promoter regulation from thousands of CRISPR perturbations
Nature Genetics 2019cited by 1,195position: middledoi
Activity-by-Contact model of enhancer specificity from thousands of CRISPR perturbations
bioRxiv (Cold Spring Harbor Laboratory) 2019cited by 21position: middledoi
Positional specificity of different transcription factor classes within enhancers
Proceedings of the National Academy of Sciences 2018cited by 99position: firstdoi
Detecting genome-wide directional effects of transcription factor binding on polygenic disease risk
Nature Genetics 2018cited by 75position: middledoi
Systematic dissection of genomic features determining transcription factor binding and enhancer function
Proceedings of the National Academy of Sciences 2017cited by 188position: firstdoi
Systematic mapping of functional enhancer–promoter connections with CRISPR interference
Science 2016cited by 711position: middledoi
RNA-RNA Interactions Enable Specific Targeting of Noncoding RNAs to Nascent Pre-mRNAs and Chromatin Sites
Cell 2014cited by 503position: middledoi
Integrating sequence and array data to create an improved 1000 Genomes Project haplotype reference panel
Nature Communications 2014cited by 455position: middledoi
Detecting Natural Selection in Genomic Data
Annual Review of Genetics 2013cited by 718position: middledoi
Identifying Recent Adaptations in Large-Scale Genomic Data
Cell 2013cited by 392position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Eric S. Lander · Broad Institute10 papers (2013–2022)J Engreitz · Stanford University8 papers (2014–2022)Michael Kane · Broad Institute5 papers (2016–2022)Thouis R. Jones · Broad Institute5 papers (2019–2022)Tung H. Nguyen · Vietnam Academy of Science and Technology5 papers (2018–2022)Joseph Nasser · Harvard University5 papers (2018–2022)Charles P. Fulco · Broad Institute5 papers (2016–2022)Drew T. Bergman · Dartmouth College4 papers (2019–2022)Elizabeth M. Perez · IGM Biosciences (United States)3 papers (2016–2019)Layla Siraj · Massachusetts Institute of Technology3 papers (2021–2022)Glen Munson · Broad Institute3 papers (2016–2019) · 3 papers (2016–2019)Vidya Subramanian · Massachusetts Institute of Technology3 papers (2019–2022)Brian Cleary · Boston University2 papers (2016–2022)Elena K. Stamenova · Alnylam Pharmaceuticals (United States)2 papers (2019–2019)Vincent Liu · Gladstone Institutes2 papers (2021–2022)Helen Kang · Broad Institute2 papers (2021–2022)Erez Lieberman Aiden · Center for Theoretical Biological Physics2 papers (2019–2019)Tejal A. Patwardhan · Harvard University2 papers (2019–2019)Neva C. Durand · Broad Institute2 papers (2019–2019)