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Heteromeric RNP Assembly at LINEs Controls Lineage-Specific RNA Processing.

Published version
Peer-reviewed

Type

Article

Change log

Authors

Attig, Jan 
Agostini, Federico 
Gooding, Clare 
Chakrabarti, Anob M 
Singh, Aarti 

Abstract

Long mammalian introns make it challenging for the RNA processing machinery to identify exons accurately. We find that LINE-derived sequences (LINEs) contribute to this selection by recruiting dozens of RNA-binding proteins (RBPs) to introns. This includes MATR3, which promotes binding of PTBP1 to multivalent binding sites within LINEs. Both RBPs repress splicing and 3' end processing within and around LINEs. Notably, repressive RBPs preferentially bind to evolutionarily young LINEs, which are located far from exons. These RBPs insulate the LINEs and the surrounding intronic regions from RNA processing. Upon evolutionary divergence, changes in RNA motifs within LINEs lead to gradual loss of their insulation. Hence, 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 the assembly of repressive RBPs and also contribute to the evolution of new, lineage-specific transcripts in mammals. VIDEO ABSTRACT.

Description

Keywords

CLIP, LINE repeats, MATR3, PTBP1, alternative polyadenylation, cryptic exons, evolution, exonogenesis, multivalency, splicing, Alternative Splicing, Animals, Binding Sites, Exons, HeLa Cells, Heterogeneous-Nuclear Ribonucleoproteins, Humans, Introns, Long Interspersed Nucleotide Elements, Mice, Mutation, Nuclear Matrix-Associated Proteins, Nucleotide Motifs, Phylogeny, Polyadenylation, Polypyrimidine Tract-Binding Protein, Protein Binding, Protein Interaction Mapping, RNA, RNA Splicing, RNA-Binding Proteins

Journal Title

Cell

Conference Name

Journal ISSN

0092-8674
1097-4172

Volume Title

174

Publisher

Elsevier BV
Sponsorship
Medical Research Council (MR/L016311/1)
Wellcome Trust (092900/Z/10/Z)
Wellcome Trust (209368/Z/17/Z)