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Gonzalez Franco, R.

Publications and source records attributed to Gonzalez Franco, R..

3 recordsLinked to original sources

HASTER is a transcriptional stabilizer of HNF1A

The biological purpose and disease relevance of long noncoding RNAs (lncRNAs) is poorly understood. We examined HASTER, a lncRNA antisense to HNF1A. Haploinsufficient mutations in HNF1A, encoding a homeodomain transcription factor, cause diabetes mellitus. Using mouse and human models, we show that HASTER maintains HNF1A at cell-specific physiological concentrations through positive and negative feedback loops. Haster mutant pancreatic {beta} cells thus showed variegated HNF1A overexpression or silencing, causing insulin-deficiency and diabetes. We demonstrate that the HASTER promoter acts in cis to prevent HNF1A overexpression and silencing, and link HASTER-dependent inhibition to local remodelling of 3D chromatin architecture. We further show that HASTER negative feedback ensures that HNF1A creates open chromatin at appropriate cell-specific genome regions. Our studies expose a cis-regulatory element that is unlike enhancers or silencers, and instead stabilizes expression levels of a pioneer transcription factor. They also show that disruption of a mammalian lncRNA can cause diabetes mellitus.

genomics

Human SKI is a telomere-associated complex involved in DNA-RNA hybrid control and telomere stability.

Super killer (SKI) complex is a well-known cytoplasmic 3' to 5' mRNA decay complex that functions with the exosome to degrade excessive and aberrant mRNAs. Recently, SKIV2L, the 3' to 5' RNA helicase of the human SKI (hSKI) complex has been implicated in the degradation of nuclear non-coding RNAs escaping to the cytoplasm. Here, we show that hSKI is present in the nucleus, on chromatin and in particular at telomeres during the G2 cell cycle phase. In cells, SKIV2L prevents telomeric loss, and DNA damage response activation, and its absence leads to DNA-RNA hybrid-mediated telomere fragility. Moreover, we demonstrate that purified hSKI complex preferentially unwinds telomeric DNA-RNA hybrids in vitro. Taken together, our results provide a nuclear function of the hSKI complex in overcoming replication stress caused by aberrant processing of telomeric DNA-RNA hybrids and thus maintaining telomere stability.

molecular biology

TRF1 prevents permissive DNA damage response, recombination and Break Induced Replication at telomeres

Telomeres are a significant challenge to DNA replication and are prone to replication stress and telomere fragility. The shelterin component TRF1 facilitates telomere replication but the molecular mechanism remains uncertain. By interrogating the proteomic composition of telomeres, we show that telomeres lacking TRF1 undergo protein composition reorganisation associated with a DNA damage response and chromatin remodelers. Surprisingly, TRF1 suppresses the accumulation of promyelocytic leukemia (PML) protein, BRCA1 and the SMC5/6 complex at telomeres, which is associated with increased Homologous Recombination (HR) and TERRA transcription. We uncovered a previously unappreciated role for TRF1 in the suppression of telomere recombination, dependent on SMC5 and also POLD3 dependent Break Induced Replication at telomeres. We propose that TRF1 facilitates S-phase telomeric DNA synthesis to prevent illegitimate mitotic DNA recombination and chromatin rearrangement.

cell biology