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Molecular Cell|March 9, 2019
Large-Scale, Quantitative Protein Assays on a High-Throughput DNA Sequencing ChipCurtis J Layton, Peter L McMahon, William J GreenleafProceedings of the National Academy of Sciences of the United States of America|March 23, 2017
Comprehensive and quantitative mapping of RNA-protein interactions across a transcribed eukaryotic genomeRichard She, Anupam K Chakravarty, Curtis J Layton, et al.Nature Biotechnology|April 15, 2014
Quantitative analysis of RNA-protein interactions on a massively parallel array reveals biophysical and evolutionary landscapesJason D Buenrostro, Carlos L Araya, Lauren M Chircus, et al.Methods (San Diego, Calif.)|December 3, 2014
Assaying the epigenome in limited numbers of cellsWilliam J GreenleafBiochemistry|November 6, 2010
Thermodynamic analysis of ligand-induced changes in protein thermal unfolding applied to high-throughput determination of ligand affinities with extrinsic fluorescent dyesCurtis J Layton, Homme W HellingaProtein Science : a Publication of the Protein Society|June 16, 2011
Integration of cell-free protein coexpression with an enzyme-linked immunosorbent assay enables rapid analysis of protein-protein interactions directly from DNACurtis J Layton, Homme W HellingaProtein Science : a Publication of the Protein Society|June 16, 2011
Quantitation of protein-protein interactions by thermal stability shift analysisCurtis J Layton, Homme W HellingaGenome Biology|July 9, 2014
The future of sequencing: convergence of intelligent design and market DarwinismWilliam J Greenleaf, Arend SidowBiorxiv : the Preprint Server for Biology|July 10, 2026
A Simple, Cost-Effective, High-Throughput Method for Measuring Chromatin Accessibility and Gene Expression in Single NucleiZhifei Luo, William J GreenleafTrends in Cell Biology|October 7, 2015
Beyond the Linear Genome: Paired-End Sequencing as a Biophysical ToolViviana I Risca, William J GreenleafPageof 22