哲学博士,教授,博士研究生导师,博士后合作导师。
广东省毒理学会理事;中国毒理学会表观遗传毒理专业委员会委员;中国环境诱变剂学会致突变专业委员会委员;中国生物物理学会光生物物理专业委员会委员;广东省科学技术厅科技咨询专家库专家;国家自然科学基金委函评专家。
主持国家级科研项目1项、省部级3项、市厅级1项。
放射毒理、药化毒理和肿瘤分子病理等领域,研究对象包括肺癌、肝癌、黑色素瘤、皮肤鳞癌、正常肺与皮肤组织。主要研究在化学、物理、病理等诱导组织细胞应激的条件下,LncRNA和细胞稳态相关因子在肿瘤与正常组织的DNA损伤修复、内质网应激、低氧应激、凋亡与自噬中的分子毒理学机制。
研究方向:
1. 放射性肺损伤与皮肤损伤中细胞应激和DNA损伤修复的分子毒理学机制;
2. LncRNA介导的蛋白修饰在细胞稳态维持与细胞命运决定中的调控机理;
3. 肿瘤耐药机理。
(1) Zhou L, Wang Y, Zhou M, Zhang Y, Wang P, Li X, Yang J, Wang H, and Ding Z*. HOXA9 Inhibits HIF-1α-Mediated Glycolysis through Interacting with CRIP2 to Repress Cutaneous Squamous Cell Carcinoma Development. Nature Communications. 2018. 9(1):1480.
(2) Liang X, Liu J, Liu X, Jin Y, Xu M, Han Z, Wang K, Zhang C, Zou F* and Zhou L*. LINP1 represses unfolded protein response by directly inhibiting eIF2α phosphorylation to promote cutaneous squamous cell carcinoma. Experimental Hematology & Oncology, 2023; 12:31.
(3) Jin Y, Liu XY, Liang XT, Liu JB, Liu JY, Han ZL, Lu QX, Wang K, Meng BY, Zhang CT, Xu MN, Guan J, Ma L*, Zhou L*. Resveratrol rescues cutaneous radiation-induced DNA damage via a novel AMPK/SIRT7/HMGB1 regulatory axis. Cell Death & Disease, 2023; 13(10):847.
(4) Han S, Li X, Wang K, Zhu DH, Meng BY, Liu JY, Liang XT, Jin Y, Liu XY, Wen Q*, Zhou L*. PURPL represses autophagic cell death to promote cutaneous melanoma by modulating ULK1 phosphorylation. Cell Death & Disease, 2021; 12(11):1070.
(5) Zhou L, Sun K, Zhao Y, Zhang S, Wang X, Li Y, Lu L, Chen X, Chen F, Bao X, Zhu X, Wang L, Tang L, Esteban MA, Wang CC, Jauch R, Sun H*, Wang H*. Linc-YY1 promotes myogenic differentiation and muscle regeneration through an interaction with the transcription factor YY1. Nature Communications. 2015. 6:10026.
(6) Zhang Y, Gao L, Ma S, Ma J, Wang Y, Li S, Hu X, Han S, Zhou M, Zhou L*, Ding Z*. MALAT1-KTN1-EGFR regulatory axis promotes the development of cutaneous squamous cell carcinoma. Cell Death & Differentiation. 2019. 26(10):2061-2073.
(7) Liu XY, Jin Y, Wan X, Liang XT, Wang K, Liu JY, Jiang JL, Meng BY, Han S, Zhou L*, Cai SX*, Zou Fei*. SALIS transcriptionally represses IGFBP3/Caspase-7-mediated apoptosis by associating with STAT5A to promote hepatocellular carcinoma. Cell Death & Disease, 2022; 13(7):642.
(8) Han S, Li X, Liang X, Zhou L*. HOXA9 Transcriptionally Promotes Apoptosis and Represses Autophagy by Targeting NF-κB in Cutaneous Squamous Cell Carcinoma. Cells. 2019. 8(11):1360.