: SINEUPs are natural and synthetic antisense long non-coding RNAs (lncRNAs) selectively enhancing target mRNAs translation by increasing their association with polysomes. This activity requires two RNA domains: an embedded inverted SINEB2 element acting as effector domain, and an antisense region, the binding domain, conferring target selectivity. SINEUP technology presents several advantages to treat genetic (haploinsufficiencies) and complex diseases restoring the physiological activity of diseased genes and of compensatory pathways. To streamline these applications to the clinic, a better understanding of the mechanism of action is needed. Here we show that natural mouse SINEUP AS Uchl1 and synthetic human miniSINEUP-DJ-1 are N6-methyla...
Pervasive transcription of mammalian genomes leads to a previously underestimated level of complexit...
SINEUPs are antisense long noncoding RNAs, in which an embedded SINE B2 element UP-regulates transla...
Long non-coding RNA (lncRNAs) show a wide range of regulatory functions at the transcriptional and p...
Thanks to continuous advances in sequencing technologies, we know that a huge number of non-coding ...
Despite recent efforts in discovering novel long non-coding RNAs (lncRNAs) and unveiling their funct...
Non-coding RNAs provide additional regulatory layers to gene expression as well as the potential to ...
Chemically modified mRNAs are extensively studied with a view toward their clinical application. In ...
SINEUPs are antisense long noncoding RNAs, in which an embedded SINE B2 element UP-regulates transla...
The project Encyclopedia of DNA Elements (ENCODE) revealed that the mammalian genome is pervasively ...
Mammalian genomes encode numerous natural antisense long noncoding RNAs (lncRNAs) that regulate gene...
Over the past 10\ua0years, it has emerged that pervasive transcription in mammalian genomes has a tr...
Translation initiation during protein synthesis is one of the rate limiting steps in regulating gene...
RNA molecules have emerged as a new class of promising therapeutics to expand the range of druggable...
Pervasive transcription of mammalian genomes leads to a previously underestimated level of complexit...
SINEUPs are antisense long noncoding RNAs, in which an embedded SINE B2 element UP-regulates transla...
Long non-coding RNA (lncRNAs) show a wide range of regulatory functions at the transcriptional and p...
Thanks to continuous advances in sequencing technologies, we know that a huge number of non-coding ...
Despite recent efforts in discovering novel long non-coding RNAs (lncRNAs) and unveiling their funct...
Non-coding RNAs provide additional regulatory layers to gene expression as well as the potential to ...
Chemically modified mRNAs are extensively studied with a view toward their clinical application. In ...
SINEUPs are antisense long noncoding RNAs, in which an embedded SINE B2 element UP-regulates transla...
The project Encyclopedia of DNA Elements (ENCODE) revealed that the mammalian genome is pervasively ...
Mammalian genomes encode numerous natural antisense long noncoding RNAs (lncRNAs) that regulate gene...
Over the past 10\ua0years, it has emerged that pervasive transcription in mammalian genomes has a tr...
Translation initiation during protein synthesis is one of the rate limiting steps in regulating gene...
RNA molecules have emerged as a new class of promising therapeutics to expand the range of druggable...
Pervasive transcription of mammalian genomes leads to a previously underestimated level of complexit...
SINEUPs are antisense long noncoding RNAs, in which an embedded SINE B2 element UP-regulates transla...
Long non-coding RNA (lncRNAs) show a wide range of regulatory functions at the transcriptional and p...