[1] Lei X,Du L,Zhang P,et al. Knockdown GTSE1 enhances radiosensitivity in non-small-cell lung cancer through DNA damage repair pathway[J]. J Cell Mol Med,2020,24(9):5162
[2] Wang L,Ma Q,Yao R,et al. Current status and development of anti-PD-1/PD-L1 immunotherapy for lung cancer[J]. Int Immunopharmacol,2020,79:106088
[3] Osmani L,Askin F,Gabrielson E,et al. Current WHO guidelines and the critical role of immunohistochemical markers in the subclassification of non-small cell lung carcinoma (NSCLC): moving from targeted therapy to immunotherapy[J]. Semin Cancer Biol,2018,52(Pt 1):103
[4] Monte M,Benetti R,Buscemi G,et al. The cell cycle-regulated protein human GTSE-1 controls DNA damage-induced apoptosis by affecting p53 function[J]. J Biol Chem,2003,278(32):30356
[5] Collavin L,Monte M,Verardo R,et al. Cell-cycle regulation of the p53-inducible gene B99[J]. FEBS Lett,2000,481(1):57
[6] Monte M,Benetti R,Collavin L,et al. hGTSE-1 expression stimulates cytoplasmic localization of p53[J]. J Biol Chem,2004,279(12):11744
[7] Bendre S,Rondelet A,Hall C,et al. GTSE1 tunes microtubule stability for chromosome alignment and segregation by inhibiting the microtubule depolymerase MCAK[J]. J Cell Biol,2016,215(5):631
[8] Wu X,Wang H,Lian Y,et al. GTSE1 promotes cell migration and invasion by regulating EMT in hepatocellular carcinoma and is associated with poor prognosis[J]. Sci Rep,2017,7(1):5129
[9] Subhash V V,Tan S H,Tan W L,et al. GTSE1 expression represses apoptotic signaling and confers cisplatin resistance in gastric cancer cells[J]. BMC Cancer,2015,15:550
[10] Stelitano D,Peche L Y,Dalla E,et al. GTSE1:a novel TEAD4-E2F1 target gene involved in cell protrusions formation in triple-negative breast cancer cell models[J]. Oncotarget,2017,8(40):67422
[11] Lin F,Xie Y J,Zhang X K,et al. GTSE1 is involved in breast cancer progression in p53 mutation-dependent manner[J]. J Exp Clin Cancer Res,2019,38(1):152
[12] Guo L,Zhang S,Zhang B,et al. Silencing GTSE-1 expression inhibits proliferation and invasion of hepatocellular carcinoma cells[J]. Cell Biol Toxicol,2016,32(4):263
[13] Liu A,Zeng S,Lu X,et al. Overexpression of G2 and S phase-expressed-1 contributes to cell proliferation,migration,and invasion via regulating p53/FoxM1/CCNB1 pathway and predicts poor prognosis in bladder cancer[J]. Int J Biol Macromol,2019,123:322
[14] Xu T,Ma M,Chi Z,et al. High G2 and S-phase expressed 1 expression promotes acral melanoma progression and correlates with poor clinical prognosis[J]. Cancer Sci,2018,109(6):1787
[15] Short B. GTSE1 leads cancer cells into CIN[J]. J Cell Biol,2016, 215(5):593
[16] Liu X S,Li H,Song B,et al. Polo-like kinase 1 phosphorylation of G2 and S-phase-expressed 1 protein is essential for p53 inactivation during G2 checkpoint recovery[J]. EMBO Rep,2010,11(8):626
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