Robin C Allshire

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University of Edinburgh
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United Kingdom

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Recent Grants

Grant: Open

Epigenetic mechanisms mediating antifungal resistance

Open Date: 2022-04-01

Close Date: 2027-03-31

Grant: Close

Epigenetic inheritance: establishment and transmission of specialised chromatin domains

Open Date: 2017-04-01

Close Date: 2022-04-01

Grant: Close

Proteomics at the Wellcome Trust Centre for Cell Biology (WTCCB) and School of Biological Sciences (SBS), Edinburgh.

Open Date: 2015-10-01

Close Date: 2020-09-30

Grant: Close

DNA sequence and chromatin constraints that influence CENP-A establishment and maintenance during cell division and over evolutionary time

Open Date: 2015-04-01

Close Date: 2017-03-31

Grant: Close

How centromeres are specified: the interplay between heterochromatin, CENP-A chromatin, and kinetochore assembly.

Open Date: 2012-04-01

Close Date: 2022-03-31

Articles (10)

The SPARC complex defines RNAPII promoters in Trypanosoma brucei

Kinetoplastids are a highly divergent lineage of eukaryotes with unusual mechanisms for regulating gene expression. We previously surveyed 65 putative chromatin factors in the kinetoplastid Trypanosoma brucei . Our analyses revealed that the predicted histone methyltransferase SET27 and the Chromodomain protein CRD1 are tightly concentrated at RNAPII transcription start regions (TSRs). Here, we report that SET27 and CRD1, together with four previously uncharacterized constituents, form the SET27 promoter-associated regulatory complex (SPARC), which is specifically enriched at TSRs. SET27 loss leads to aberrant RNAPII recruitment to promoter sites, accumulation of polyadenylated transcripts upstream of normal transcription start sites, and conversion of some normally unidirectional promoters to bidirectional promoters. Transcriptome analysis in the absence of SET27 revealed upregulated mRNA expression in the vicinity of SPARC peaks within the main body of chromosomes in addition to derepression of genes encoding variant surface glycoproteins (VSGs) located in subtelomeric regions. These analyses uncover a novel chromatin-associated complex required to establish accurate promoter position and directionality.

Year:

2022

Collaborators (5)

Rebecca V Berrens

Principal Investigator

University of Oxford

UNITED KINGDOM

Professor Keith Matthews FRS FMedSci FRSE

Professor of Parasite Biology

University of Edinburgh

UNITED KINGDOM

Arockia Jeyaprakash Arulanandam

Professor

Ludwig-Maximilians-Universität München

GERMANY

Yuka Kabayama

University of Edinburgh

UNITED KINGDOM

David Tollervey

Center Director; Professor of RNA Biology

University of Edinburgh

UNITED KINGDOM
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