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IGF1R-phosphorylated PYCR1 facilitates ELK4 transcriptional activity and sustains tumor growth under hypoxia. | LitMetric

IGF1R-phosphorylated PYCR1 facilitates ELK4 transcriptional activity and sustains tumor growth under hypoxia.

Nat Commun

Endoscopy Center, Department of Gastroenterology, Shanghai East Hospital, School of Medicine, Tongji University, Shanghai, China.

Published: September 2023

AI Article Synopsis

  • Proline synthesis plays a crucial role in tumor growth under low oxygen conditions (hypoxia), but the exact mechanisms are still being studied.
  • PYCR1, an enzyme with a consistent presence in the nucleus, is phosphorylated by IGF1R at a specific site (Tyrosine 135) during hypoxia, which enables it to bind to the transcription factor ELK4 and influence target genes.
  • This phosphorylation of PYCR1 supports tumor growth under hypoxia and correlates with the severity of colorectal cancer, demonstrating its important role in regulating gene transcription and contributing to cancer development.

Article Abstract

The proline synthesis is importantly involved in tumor growth under hypoxia, while the underlying mechanism remains to be further investigated. Here we show that pyrroline-5-carpoxylate reductase-1 (PYCR1), displaying a constant nuclear localization, is phosphorylated by nuclear IGF1R at Tyrosine 135 under hypoxia; this phosphorylation promotes the binding of PYCR1 to ELK4 and thus PYCR1 recruitment to ELK4-targeted genes promoter. Under hypoxia, ELK4-binding ability and enzymatic activity of PYCR1 are both required for ELK4-Sirt7-mediated transcriptional repression and cell growth maintenance, in which PYCR1-catalyzed NAD production stimulates the deacetylation activity of Sirt7 on H3K18ac that restrains genes transcription. Functionally, PYCR1 Tyr-135 phosphorylation exerts supportive effect on tumor growth under hypoxia, and the level of PYCR1 Tyr-135 phosphorylation is associated with malignancy of colorectal cancer (CRC). These data uncover the relationship between the compartmentally metabolic activity of PYCR1 and genes transcription regulation, and highlight the oncogenic role of PYCR1 during CRC development.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10542766PMC
http://dx.doi.org/10.1038/s41467-023-41658-zDOI Listing

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