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Palmatine attenuates MYH9 mediated nuclear localization of AURKA to induce G2/M phase arrest in colorectal cancer cells. | LitMetric

Palmatine attenuates MYH9 mediated nuclear localization of AURKA to induce G2/M phase arrest in colorectal cancer cells.

Int Immunopharmacol

Engineering Research Center of Coptis Development & Utilization (Ministry of Education), School of Life Sciences, Southwest University, Chongqing 400715, China. Electronic address:

Published: December 2024

AI Article Synopsis

  • - AURKA (Aurora kinase A) is identified as a significant target in the fight against colorectal cancer (CRC), and its role in tumor development has been confirmed through mouse models and human tissue analysis.
  • - Palmatine (PAL), a CRC suppressor, inhibits CRC cell growth by down-regulating AURKA, leading to cell cycle arrest in the G2/M phase, and experiments show that increased AURKA levels can counteract PAL's effects.
  • - The study highlights the interaction between AURKA and Myosin heavy chain 9 (MYH9), revealing that PAL reduces nuclear AURKA by disrupting this interaction, providing insights into potential therapeutic applications for CRC treatment.

Article Abstract

The mitotic kinase Aurora kinase A (AURKA), which plays a crucial role in cell cycle progression, represents a promising target for the treatment of colorectal cancer (CRC). Here, we found that AURKA is a target of a CRC suppressor, the Palmatine (PAL). However, the underlying mechanism remains elusive. This work aims to investigate the underlying mechanism how PAL suppresses CRC through AURKA. It was confirmed that AURKA played an important role in the development of CRC tumors through an Azoxymethane/Dextran sulfate sodium salt induced mice model and tissue microarrays of CRC-patients. Overexpression of AURKA was able to partially reverse the inhibitory effect of PAL on CRC cells, showing that PAL significantly inhibited the malignant phenotype and induced the G2/M phase arrest of CRC cells by down-regulating AURKA. Functional studies indicated that PAL attenuated the stability of AURKA protein and reduced its nuclear level, resulting in reduction of key proteins in the G2/M phase. Importantly, Co-IP and WB experiments suggested that Myosin heavy chain 9 (MYH9) interacted with AURKA and had an impact on its nuclear localization. PAL can decrease nuclear AURKA by reducing the interaction of AURKA and MYH9. Taken together, our study revealed that MYH9 as an auxiliary protein for the nuclear localization of AURKA and elucidated the mechanism that PAL reduced nuclear AURKA through inhibiting the interaction of AURKA and MYH9 to induce G2/M phase arrest in CRC cells. Therefore, this study may provide a theoretical basis of PAL for the treatment of CRC.

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Source
http://dx.doi.org/10.1016/j.intimp.2024.113615DOI Listing

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