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Updated: Jul 10, 2026

RNA Pull-down Procedure to Identify RNA Targets of a Long Non-coding RNA
Published on: April 10, 2018
Ribosomal RNA transcription is regulated by sequestration of LATS2 and PHF6 to the nuclear speckles following DNA
Hirokazu Suzuki1, Satomi Mukai1, Yorika Kato1
1Research Institute for Microbial Diseases , The University of Osaka, 3-1 Yamadaoka, Suita City, Osaka 565-0871, Japan.
Abstract:
Mammalian large tumor suppressor 2 (LATS2) is an evolutionarily conserved Ser/Thr kinase that regulates the Hippo signaling pathway and cell cycle checkpoints. In this study, we demonstrate that ultraviolet (UV) irradiation causes the phosphorylation of LATS2 at S835, leading to localization of a portion of it to the nuclear speckle, which is a membraneless organelle enriched in pre-mRNA splicing factors in the nucleoplasm. This phosphorylation can potentially enhance LATS2 kinase activity and induce subsequent phosphorylation of plant homeodomain finger protein 6 (PHF6) at S183. We also show that LATS2 promotes ribosomal RNA (rRNA) transcription in the absence of UV irradiation and that PHF6 is translocated from the nucleolus to the nucleoplasm after UV damage. Some of the phosphorylated PHF6 localizes in the nuclear speckles after UV irradiation, eventually preventing LATS2-mediated rRNA transcription. These results suggest that the nuclear speckle functions as a sequestration site for transcriptional regulators and as a crucible that promotes biochemical reactions in the DNA damage response. Therefore, a strategy targeting the LATS2-PHF6 axis could facilitate the development of new therapies for critical diseases caused by abnormal rRNA synthesis, such as ribosomopathies and cancers.
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