4.6 Article

SHMT2 promotes tumor growth through VEGF and MAPK signaling pathway in breast cancer

期刊

AMERICAN JOURNAL OF CANCER RESEARCH
卷 12, 期 7, 页码 3405-+

出版社

E-CENTURY PUBLISHING CORP

关键词

SHMT2; breast cancer; serine; glycine metabolism; VEGF; MAPK

类别

资金

  1. Sun-Yat sen University Cancer Center
  2. National Natural Science Foundation of China [81773103, 82102838, 82103437]
  3. Natural Science Foundation of Guangdong Province [2017A030313617]
  4. Youth Innovative Talents Project of Guangdong Province [2018KQNCX049]
  5. Innovation Strong College of Guangzhou University of Chinese Medicine [2019QN09]
  6. Chinese Post- doctoral Science Foundation [2021M693649]

向作者/读者索取更多资源

SHMT2, highly expressed in breast cancer cells, influences breast cancer cell proliferation by regulating MAPK and VEGF signaling pathways.
Cancer cells modulate their metabolic activities to adapt to their growth and proliferation. Despite advanc-es in breast cancer biology having led to the widespread use of molecular targeted therapy and hormonal drugs, the molecular mechanisms in metabolism related to the regulation of breast cancer cell proliferation are still poorly understood. Here, we investigate the possible role of SHMT2, a key enzyme in serine metabolism, in breast cancer. Firstly, SHMT2 is found highly expressed in both breast cancer cells and tissues, and patients with high expression of SHMT2 have a worse prognosis. Moreover, the intervention of SHMT2 by either knockdown or over-expression in vitro induces the effect on breast cancer proliferation. Mechanistically, RNA-seq shows that over-expression of SHMT2 affect multiple signaling pathways and biological process in breast cancer cells. Furthermore, we confirm that SHMT2 promotes breast cancer cell growth through MAPK and VEGF signaling pathways. Finally, we verify the role of SHMT2 in promoting breast cancer growth in the xenograft tumor model. Our results indicate that SHMT2 plays a critical role in regulating breast cancer growth through MAPK, and VEGF signaling pathways, and maybe serve as a therapeutic target for breast cancer therapy.

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