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Bragado, L.

Publications and source records attributed to Bragado, L..

2 recordsLinked to original sources

Influence of circular RNA topology on microRNA stability

A subset of circular RNAs (circRNAs) and linear RNAs have been proposed to "sponge" or block microRNA activity. Additionally, certain RNAs induce microRNA destruction through the process of Target RNA-Directed MicroRNA Degradation (TDMD), but whether both linear and circular transcripts are equivalent in driving TDMD is unknown. Here we study whether circular/linear topology of endogenous and artificial RNA targets affects TDMD. Consistent with previous knowledge that Cdr1as (ciRS-7) circular RNA protects miR-7 from Cyrano-mediated TDMD, we demonstrate that depletion of Cdr1as reduces miR-7 abundance. In contrast, overexpression of an artificial linear version of Cdr1as drives miR-7 degradation. Using plasmids that express a circRNA with minimal co-expressed cognate linear RNA, we show differential effects on TDMD that cannot be attributed to the nucleotide sequence, as the TDMD properties of a sequence often differ between its circular and linear forms. By analysing RNA sequencing data of a neuron differentiation system, we further detect potential effects of circRNAs on microRNA stability. Our results support the view that RNA circularity influences TDMD, either enhancing or inhibiting it on specific microRNAs.

molecular biology↗

SUMO conjugation regulates the activity of the Integrator complex

RNA pol II transcribes snRNA genes in close proximity to Cajal bodies, subnuclear compartments that depend on the SUMO isopeptidase USPL1 for their assembly. We show here that overexpression of USPL1 alters snRNA 3-end cleavage, a process carried out by the Integrator complex. Beyond its role in snRNA biogenesis, this complex is responsible for regulating the expression of different non-coding and coding transcripts. We validated several subunits of the complex as SUMO conjugation substrates, and found that the SUMOylation of INTS11 subunit is regulated by USPL1. We defined Lys 381, Lys 462 and Lys 475 as bona fide SUMO attachment sites within INTS11 and observed that SUMOylation of this protein is required for efficient Integrator activity. Moreover, while an INTS11 SUMOylation deficient mutant is still capable of interacting with INTS4 and INTS9, its interaction with other subunits of the complex is affected. This mutant also shows a more cytoplasmatic localization than the wild type protein. These findings point to a regulatory role of SUMO conjugation on Integrator activity and suggest the involvement of INTS11 SUMOylation in the assembly of the complex. Furthermore, this work adds the Integrator-dependent RNA processing to the growing list of cellular processes regulated by SUMO conjugation.

molecular biology↗