Title : PSMG3-AS1 enhances glioma resistance to temozolomide via stabilizing c-Myc in the nucleus.

Pub. Date : 2022 May

PMID : 35380741






9 Functional Relationships(s)
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1 PSMG3-AS1 enhances glioma resistance to temozolomide via stabilizing c-Myc in the nucleus. Temozolomide proteasome assembly chaperone 3 Homo sapiens
2 We also demonstrated that PSMG3-AS1 mediates the resistance of GBM to TMZ, as knockdown of PSMG3-AS1 remarkably increased the sensitivity whereas overexpression of PSMG3-AS1 in sensitive GBM cell line induced a resistance phenotype to TMZ. Temozolomide proteasome assembly chaperone 3 Homo sapiens
3 We also demonstrated that PSMG3-AS1 mediates the resistance of GBM to TMZ, as knockdown of PSMG3-AS1 remarkably increased the sensitivity whereas overexpression of PSMG3-AS1 in sensitive GBM cell line induced a resistance phenotype to TMZ. Temozolomide proteasome assembly chaperone 3 Homo sapiens
4 We also demonstrated that PSMG3-AS1 mediates the resistance of GBM to TMZ, as knockdown of PSMG3-AS1 remarkably increased the sensitivity whereas overexpression of PSMG3-AS1 in sensitive GBM cell line induced a resistance phenotype to TMZ. Temozolomide proteasome assembly chaperone 3 Homo sapiens
5 We also demonstrated that PSMG3-AS1 mediates the resistance of GBM to TMZ, as knockdown of PSMG3-AS1 remarkably increased the sensitivity whereas overexpression of PSMG3-AS1 in sensitive GBM cell line induced a resistance phenotype to TMZ. Temozolomide proteasome assembly chaperone 3 Homo sapiens
6 We also demonstrated that PSMG3-AS1 mediates the resistance of GBM to TMZ, as knockdown of PSMG3-AS1 remarkably increased the sensitivity whereas overexpression of PSMG3-AS1 in sensitive GBM cell line induced a resistance phenotype to TMZ. Temozolomide proteasome assembly chaperone 3 Homo sapiens
7 Mechanistically, PSMG3-AS1 directly binds to c-Myc and thus stabilizes c-Myc in the nucleus to promote the survival of GBM cells under treatment of TMZ. Temozolomide proteasome assembly chaperone 3 Homo sapiens
8 Our data demonstrated an unreported role of PSMG3-AS1 in TMZ resistance and provide a potential novel target to tackle TMZ resistance in GBM. Temozolomide proteasome assembly chaperone 3 Homo sapiens
9 Our data demonstrated an unreported role of PSMG3-AS1 in TMZ resistance and provide a potential novel target to tackle TMZ resistance in GBM. Temozolomide proteasome assembly chaperone 3 Homo sapiens