Qingya Luo
Third Military Medical University
13 Papers
34 Citations
Qingya Luo is an academic researcher from Third Military Medical University. The author has contributed to research in topics: Carcinogenesis & Gene knockdown. The author has an hindex of 5, co-authored 10 publications.
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Papers
The m6A reader YTHDF1 promotes ovarian cancer progression via augmenting EIF3C translation.
Tao Liu,Qinglv Wei,Jing Jin,Qingya Luo,Yi Liu,Yi Liu,Yu Yang,Chunming Cheng,Lanfang Li,Jingnan Pi,Yanmin Si,Hualiang Xiao,Li Li,Shuan Rao,Fang Wang,Jianhua Yu,Jia Yu,Dongling Zou,Ping Yi,Ping Yi +19 more
TL;DR: The novel YTHDF1-EIF3C axis critical for ovarian cancer progression is identified which can serve as a target to develop therapeutics for cancer treatment and modification of Eif3C mRNA is more relevant to its role in cancer.
Loss of hnRNPA2B1 inhibits malignant capability and promotes apoptosis via down-regulating Lin28B expression in ovarian cancer
Yu Yang,Qinglv Wei,Yuling Tang,Yuanyuan Wang,Qingya Luo,Hongyan Zhao,Min He,Haocheng Wang,Q L Zeng,Weiliang Lu,Jing Xu,Tao Liu,Ping Yi +12 more
TL;DR: It is demonstrated that hnRNPA2B1 facilitates the malignant phenotype of ovarian cancer through activating Lin28B expression and re-expression ofLin28B in hn RNPA2 B1 knockdown cells results in rescued phenotypes.
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Upregulation of LRRC8A by m5C modification-mediated mRNA stability suppresses apoptosis and facilitates tumorigenesis in cervical cancer
Yanjie Chen,Xinzhao Zuo,Qin Wei,Jie Xu,Xiaoyi Liu,Shiling Liu,Haocheng Wang,Qingya Luo,Yuya Wang,Y. Yang,Hongyan Zhao,Jing Xu,Tao Liu,Ping Yi +13 more
TL;DR: In this article , the authors found that LRRC8A is upregulated by NSUN2-mediated m5C modification, which is associated with poor prognosis in cervical cancer.
Characterization of the Expression of the RNA Binding Protein eIF4G1 and Its Clinicopathological Correlation with Serous Ovarian Cancer.
Lanfang Li,Qingya Luo,Zhe Xie,Guiqin Li,Chengyi Mao,Yi Liu,Xin Wen,Na Yin,Jianzhong Cao,Jing Wang,Li Li,Jianhua Yu,Fang Wang,Ping Yi +13 more
TL;DR: It is revealed that eIF4G1 is markedly expressed in serous ovarian cancer and that upregulation of the eIF 4G1 protein expression is significantly associated with an advanced tumor stage and the patients with lower expression of eIF3G1 tend to have a longer overall survival time.
PHLDA1 Modulates the Endoplasmic Reticulum Stress Response and is required for Resistance to Oxidative Stress-induced Cell Death in Human Ovarian Cancer Cells.
Jing Xu,Gang Bi,Qingya Luo,Yi Liu,Yi Liu,Tao Liu,Lanfang Li,Q L Zeng,Qi-En Wang,Yufeng Wang,Jianhua Yu,Jianhua Yu,Ping Yi,Ping Yi +13 more
TL;DR: In this article, the authors examined the expression of PHLDA1 in human ovarian cancer (OvCa), the most lethal gynecologic malignancy, and investigated its functions in vitro.