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The mechanism of extracellular CypB promotes glioblastoma adaptation to glutamine deprivation microenvironment.
Yin, Hang; Liu, Yang; Dong, Qiang; Wang, Hongyu; Yan, Yunji; Wang, Xiaoqing; Wan, Xiaoyu; Yuan, Guoqiang; Pan, Yawen.
Afiliação
  • Yin H; Department of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China.
  • Liu Y; Laboratory of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China; Neurological Diseases Clinical Medical Research Center of Gansu Province, Lanzhou, China.
  • Dong Q; Department of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China.
  • Wang H; Department of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China.
  • Yan Y; Department of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China.
  • Wang X; Laboratory of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China; Neurological Diseases Clinical Medical Research Center of Gansu Province, Lanzhou, China.
  • Wan X; Division of Cellular and Molecular Research, National Cancer Centre Singapore, 11 Hospital Crescen, Singapore, Singapore; School of Basic Medicine, Henan University, Kaifeng, China.
  • Yuan G; Laboratory of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China; Neurological Diseases Clinical Medical Research Center of Gansu Province, Lanzhou, China. Electronic address: yuangq08@lzu.edu.cn.
  • Pan Y; Department of Neurosurgery, Lanzhou University Second Hospital, Lanzhou, China. Electronic address: pyw@lzu.edu.cn.
Cancer Lett ; 597: 216862, 2024 Aug 10.
Article em En | MEDLINE | ID: mdl-38582396
ABSTRACT
Glioblastoma, previously known as glioblastoma multiform (GBM), is a type of glioma with a high degree of malignancy and rapid growth rate. It is highly dependent on glutamine (Gln) metabolism during proliferation and lags in neoangiogenesis, leading to extensive Gln depletion in the core region of GBM. Gln-derived glutamate is used to synthesize the antioxidant Glutathione (GSH). We demonstrated that GSH levels are also reduced in Gln deficiency, leading to increased reactive oxygen species (ROS) levels. The ROS production induces endoplasmic reticulum (ER) stress, and the proteins in the ER are secreted into the extracellular medium. We collected GBM cell supernatants cultured with or without Gln medium; the core and peripheral regions of human GBM tumor tissues. Proteomic analysis was used to screen out the target-secreted protein CypB. We demonstrated that the extracellular CypB expression is associated with Gln deprivation. Then, we verified that GBM can promote the glycolytic pathway by activating HIF-1α to upregulate the expression of GLUT1 and LDHA. Meanwhile, the DRP1 was activated, increasing mitochondrial fission, thus inhibiting mitochondrial function. To explore the specific mechanism of its regulation, we constructed a si-CD147 knockout model and added human recombinant CypB protein to verify that extracellular CypB influenced the expression of downstream p-AKT through its cell membrane receptor CD147 binding. Moreover, we confirmed that p-AKT could upregulate HIF-1α and DRP1. Finally, we observed that extracellular CypB can bind to the CD147 receptor, activate p-AKT, upregulate HIF-1α and DRP1 in order to promote glycolysis while inhibiting mitochondrial function to adapt to the Gln-deprived microenvironment.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Glioblastoma / Microambiente Tumoral / Glutamina Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Glioblastoma / Microambiente Tumoral / Glutamina Idioma: En Ano de publicação: 2024 Tipo de documento: Article