bioRxiv · 10.1101/2021.04.28.441894
Chromatin-interacting transposon RNAs linking to the core trans-inhibition circuitry for embryonic stem cell identity
Abstract
Transposable DNA sequences constitute more than half of the human and mouse genomes. A large number of non-coding RNAs, named as transposon RNAs, are derived from these transposable elements. The cis-regulatory function of transposable DNA elements, such as LINE-1 and Alu has been largely explored. But the biological roles of transposon RNAs arent well understood. Here, investigations of RNA-chromatin interactions provide us with comprehensive evidence that specific families of transposon RNAs play roles in trans-regulation linking to the core inhibition circuitry for embryonic stem cell identity. Alternative modes of the RNA-DNA hybrid duplex and protein-recruited RNA scaffold are required for the regulatory activities of transposon RNAs. LINE-1 RNAs co-locating with KAP1 form a negative feedback loop stabilizing the transcription of LINE-1 DNA elements via RNA-DNA hybrids. In another way LINE-1 RNAs, together with the reprogramming three factors and Polycomb repressive complexes, participate in the inhibition on dozens of differentiation-relative genes.
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Xu, W., Ren, L., Zheng, C., Cai, J.. 2021-04-30. Chromatin-interacting transposon RNAs linking to the core trans-inhibition circuitry for embryonic stem cell identity. https://doi.org/10.1101/2021.04.28.441894
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