William T. Sherlock
University College London
3 Papers
William T. Sherlock is an academic researcher from University College London. The author has contributed to research in topics: Promoter & Gene silencing. The author has an hindex of 3, co-authored 3 publications.
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Papers
A Functional Switch of NuRD Chromatin Remodeling Complex Subunits Regulates Mouse Cortical Development
Justyna Nitarska,Jacob G. Smith,William T. Sherlock,Michele M.G. Hillege,Alexi Nott,William D. Barshop,Ajay A. Vashisht,James A. Wohlschlegel,Richard Mitter,Antonella Riccio +9 more
TL;DR: The NuRD complex, which couples ATP-dependent chromatin remodeling with histone deacetylase activity, regulates mouse brain development and it is demonstrated that NuRD complexes containing specific CHDs are recruited to regulatory elements and modulate the expression of genes essential for brain development.
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Binding of TFIIIC to SINE Elements Controls the Relocation of Activity-Dependent Neuronal Genes to Transcription Factories
Luca Crepaldi,Cristina Policarpi,Alessandro Coatti,William T. Sherlock,Bart C. Jongbloets,Thomas A. Down,Antonella Riccio +6 more
TL;DR: A novel and essential regulatory function of both SINEs and TFIIIC in mediating gene relocation and transcription is revealed, and it is suggested thatTFIIIC may regulate the rearrangement of nuclear architecture, allowing the coordinated expression of activity-dependent neuronal genes.
Distinct steps of neural induction revealed by Asterix, Obelix and TrkC, genes induced by different signals from the organizer.
Sonia Pinho,Pamela R. Simonsson,Katherine E. Trevers,Matthew J. Stower,William T. Sherlock,Mohsin A.F. Khan,Andrea Streit,Guojun Sheng,Claudio D. Stern +8 more
TL;DR: Three distinct “epochs” of gene expression accompanying neural induction by a grafted organizer, which are mirrored by specific stages of normal neural plate development, are revealed, consistent with neural induction being a cascade of responses elicited by different signals, culminating in the formation of a patterned nervous system.