Project description:Proof-of-concept for Mnase-SSP: a variant of Mnase-seq. Mnase-SSP dramatically increases the representation of short fragments of nucleolytically-digested DNA, enabling simultaneous analysis of transcription factor binding and nucleosome occupancy using the same assay. We used MNase-SSP to demarcate chromatin architecture at murine promoters and at transcription factor binding sites in murine embryonic stem cells. Are results reveal heterogeneity in the binding mode of C2H2 zinc fingers like Ctcf and Rest, demonstrating that Mnase-SSP, and SSP in general, as a flexible platform for profiling nucleolytically digested DNA for MNase-seq, MNase-ChIP, or CUT&RUN with reduced bias.
Project description:The process of producing the GRC zebrafish assembly included the high-quality sequencing and finishing of clones representing alternate haplotypes to corresponding regions in the current primary assembly. This project reports the variation between those alternate haplotype clones and the primary assembly.