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A glutaminase isoform switch drives therapeutic resistance and disease progression of prostate cancer.


ABSTRACT: Cellular metabolism in cancer is significantly altered to support the uncontrolled tumor growth. How metabolic alterations contribute to hormonal therapy resistance and disease progression in prostate cancer (PCa) remains poorly understood. Here we report a glutaminase isoform switch mechanism that mediates the initial therapeutic effect but eventual failure of hormonal therapy of PCa. Androgen deprivation therapy inhibits the expression of kidney-type glutaminase (KGA), a splicing isoform of glutaminase 1 (GLS1) up-regulated by androgen receptor (AR), to achieve therapeutic effect by suppressing glutaminolysis. Eventually the tumor cells switch to the expression of glutaminase C (GAC), an androgen-independent GLS1 isoform with more potent enzymatic activity, under the androgen-deprived condition. This switch leads to increased glutamine utilization, hyperproliferation, and aggressive behavior of tumor cells. Pharmacological inhibition or RNA interference of GAC shows better treatment effect for castration-resistant PCa than for hormone-sensitive PCa in vitro and in vivo. In summary, we have identified a metabolic function of AR action in PCa and discovered that the GLS1 isoform switch is one of the key mechanisms in therapeutic resistance and disease progression.

SUBMITTER: Xu L 

PROVIDER: S-EPMC8020804 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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A glutaminase isoform switch drives therapeutic resistance and disease progression of prostate cancer.

Xu Lingfan L   Yin Yu Y   Li Yanjing Y   Chen Xufeng X   Chang Yan Y   Zhang Hong H   Liu Juan J   Beasley James J   McCaw Patricia P   Zhang Haoyue H   Young Sarah S   Groth Jeff J   Wang Qianben Q   Locasale Jason W JW   Gao Xia X   Tang Dean G DG   Dong Xuesen X   He Yiping Y   George Daniel D   Hu Hailiang H   Huang Jiaoti J  

Proceedings of the National Academy of Sciences of the United States of America 20210301 13


Cellular metabolism in cancer is significantly altered to support the uncontrolled tumor growth. How metabolic alterations contribute to hormonal therapy resistance and disease progression in prostate cancer (PCa) remains poorly understood. Here we report a glutaminase isoform switch mechanism that mediates the initial therapeutic effect but eventual failure of hormonal therapy of PCa. Androgen deprivation therapy inhibits the expression of kidney-type glutaminase (KGA), a splicing isoform of gl  ...[more]

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