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Biology subjects

Emmett, W.

Publications and source records attributed to Emmett, W..

2 recordsLinked to original sources

Heteromeric RNP assembly at LINEs controls lineage-specific RNA processing

It is challenging for RNA processing machineries to select exons within long intronic regions. We find that intronic LINE repeat sequences (LINEs) contribute to this selection by recruiting dozens of RNA-binding proteins (RBPs). This includes MATR3, which promotes binding of PTBP1 to multivalent binding sites in LINEs. Both RBPs repress splicing and 3 end processing within and around LINEs, as demonstrated in cultured human cells and mouse brain. Notably, repressive RBPs preferentially bind to evolutionarily young LINEs, which are confined to deep intronic regions. These RBPs insulate both LINEs and surrounding regions from RNA processing. Upon evolutionary divergence, gradual loss of insulation diversifies the roles of LINEs. Older LINEs are located closer to exons, are a common source of tissue-specific exons, and increasingly bind to RBPs that enhance RNA processing. Thus, LINEs are hubs for assembly of repressive RBPs, and contribute to evolution of new, lineage-specific transcripts in mammals.

genomics

Association study of schizophrenia with variants in miR-137 binding sites

There is strong cumulative evidence for the involvement of miR-137 and its targets in the aetiology of schizophrenia. Here we test whether variants, especially rare variants, in miR137 binding sites are associated with schizophrenia in an exome-sequenced sample of 4225 cases and 5834 controls. A weighted burden test using 372 variants was significant at p=0.024. The sample size is too small to implicate individual variants or genes but overall this finding provides further support for the hypothesis that disruption of miR-137 binding sites can increase the risk of schizophrenia, perhaps by leading to over-expression of the target gene. These findings could be followed up by genotyping these variants in larger samples and by experimentally testing whether they do indeed effect expression. When carrying out exome sequencing it is important to include UTRs so that disruption of microRNA bindings sites can be detected.

genetics