0
Skip to Content
The Larschan Lab
Home
People
Research
Zygotic Genome Activation
Splicing and Transcription
Coordinate Regulation of Synaptic Genes
Machine Learning Approaches to Studying Chromatin
Press
Photos
The Larschan Lab
Home
People
Research
Zygotic Genome Activation
Splicing and Transcription
Coordinate Regulation of Synaptic Genes
Machine Learning Approaches to Studying Chromatin
Press
Photos
Home
People
Folder: Research
Back
Zygotic Genome Activation
Splicing and Transcription
Coordinate Regulation of Synaptic Genes
Machine Learning Approaches to Studying Chromatin
Press
Photos

Press

  • CLAMP and Zelda function together as pioneer transcription factors to promote Drosophila zygotic genome activation

  • How Men Amp Up Their X Chromosome

  • Mapping a Path to Genetics' Next Frontier

  • Fruit Fly Protein Dual Duties May Make it Model for Studies of Protein Function in Context

  • President Obama Honors Outstanding Early-Career Scientists

Publications

  • Diverse Genome Topologies Characterize Dosage Compensation across Species

  • Differential Occupancy of Two GA-Binding Proteins Promotes Targeting of the Drosophila Dosage Compensation Complex to the Male X Chromosome

  • The Drosophila CLAMP protein associates with diverse proteins on chromatin

  • Enhanced chromatin accessibility of the dosage compensated Drosophila male X-chromosome requires the CLAMP zinc finger protein

  • Histone locus regulation by the Drosophila dosage compensation adaptor protein CLAMP

  • Drosophila dosage compensation loci associate with a boundary forming insulator complex.

  • The essential Drosophila CLAMP protein differentially regulates non-coding roX RNAs in male and females

  • The CLAMP protein links the MSL complex to the X chromosome during Drosophila dosage compensation

185 Meeting Street, Providence RI | erica_larschan@brown.edu

Made with Squarespace