RARγ promotes the invasion and metastasis of thyroid carcinoma by activating the JAK1-STAT3-CD24/MMPs axis.

Int Immunopharmacol

Xiamen Cell Therapy Research Center, The First Affiliated Hospital of Xiamen University, School of Medicine, Xiamen University, Xiamen 361003, Fujian Province, China. Electronic address:

Published: December 2023

AI Article Synopsis

  • The study investigates the role of the nuclear receptor RARγ in thyroid carcinoma (TC), discovering that RARγ is significantly overexpressed in TC tissues compared to normal tissues.
  • Researchers found that RARγ expression correlates with key cell behaviors like proliferation, migration, and invasion, indicating its role in tumor development.
  • The mechanism revealed that depleting RARγ reduces the activity of JAK1 and STAT3 proteins, affecting the expression of CD24, which helps TC cells evade macrophage attack, suggesting RARγ as a potential therapeutic target.

Article Abstract

The nuclear receptor superfamily RAR is generally considered to play a crucial role in the development of tumors by regulating the transcription of target genes. Nevertheless, whether RARγ performs tumor-promoting or tumor-suppressing functions and its specific mechanism in thyroid carcinoma (TC) remain unknown. Here, our study demonstrated that RARγ was abnormally overexpressed in TC tissues compared with normal thyroid tissues. Moreover, RARγ expression was remarkably correlated with cell phenotypes such as cell proliferation, migration and invasion. Mechanistically, RARγ knockdown effectively decreased the phosphorylation levels of JAK1 and STAT3, leading to decreased expression of the membrane protein CD24. In a coculture system, TC cells with high levels of CD24 in the membrane were more likely to escape phagocytosis by macrophages via the combination of CD24 with the inhibitory receptor Siglec-10 in the membrane of macrophages. In contrast, the ability of macrophages to engulf TC cells was notably elevated through exogenous addition of CD24 antibody. Collectively, our study revealed a previously undiscovered molecular mechanism of RARγ in promoting the development of TC, shedding light on RARγ as a promising therapeutic target for TC.

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Source
http://dx.doi.org/10.1016/j.intimp.2023.111129DOI Listing

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