
2013年本科毕业于西北农林科技大学。2018年博士毕业于复旦大学生命科学学院生物化学与分子生物学专业。2018-2020年在南方科技大学从事博士后研究工作,合作导师为Dinshaw J. Patel。2020年入选中山大学“BR计划”青年学术骨干,受聘于中山大学孙逸仙纪念医院工作,任PI副研究员;2024年获广东省“TZ计划”青年拔尖人才。2025年3月起中国科学院广州生物医药与健康研究院,任中国-新西兰生物医药与健康”一带一路“联合实验室,医药创新研究所核酸化学课题组长,PI研究员,博士生导师。
研究工作以(共同)第一/通讯作者发表在Cell Host & Microbe, Nature Communications, Nucleic Acids Research, Molecular Plant, JBC, Journal of Virology, Structure等国际期刊。此外,以共同作者在Nature Immunology,Molecular Cell,PNAS,Cell research,NSMB等发表多篇成果。国家重点研发计划评审专家,国家博士后基金评审专家,Exploration杂志青年编委。担任多个国际高水平期刊的审稿人。目前总引用超3000次,H-index 21(Google Scholar 截至 2026.10)。
个人主页:https://www.x-mol.com/groups/wu_baixing.
Google Scholar:https://scholar.google.com/citations?user=_bGMyZkAAAAJ&hl=ja.
教育背景
2009.09-2013.09 西北农林科技大学,植物科学与技术专业,学士
2013.09-2018.09 复旦大学,生物化学与分子生物学,博士
工作经历
2018.06-2020.06 南方科技大学,博士后
2020.06-2025.02 中山大学孙逸仙纪念医院,PI,副研究员
2025.03-至今 中国科学院广州生物医药与健康研究院,医药创新研究所,PI,研究员
本实验室聚焦于核酸生物学、RNA工程与核酸药物研究,综合采用生物化学、分子生物学、细胞生物学、结构生物学及计算生物学等技术手段,结合X射线晶体学、冷冻电镜(Cryo-EM)、RNA体外转录与核酶工程、高通量筛选、RNA结构预测、质谱分析及细胞和动物模型等技术,构建从分子机制解析、功能RNA设计、环状RNA生成与纯化,到核酸药物功能评价和疾病应用的多层次研究体系,推动核酸基础研究向生物技术和临床转化应用发展。
主要研究方向包括:
1. 环状RNA生成与工程化制备
研究RNA自剪接与环化机制,开发高效、低副产物、适用于不同长度RNA的环状RNA生成、纯化及质量控制技术。
2. 环状RNA功能设计与核酸药物应用
开发具有蛋白表达、疫苗抗原表达、RNA干扰、RNA适配体及多功能协同作用的可编程环状RNA体系,并开展其在肿瘤、代谢及心血管疾病等方向的应用研究。
3. 功能性RNA元件与可编程RNA设计
研究IRES、核酶、RNA适配体等功能RNA元件,结合高通量筛选、RNA结构分析及计算设计,优化RNA的环化效率、翻译效率、稳定性和功能输出。
4. 核酸修饰、识别与RNA加工机制
研究RNA和DNA化学修饰相关蛋白、RNA结合蛋白及RNA加工复合物的催化、识别与调控机制,解析核酸序列、修饰和结构与功能之间的关系。
5. 天然产物生物合成与结构酶学
研究天然代谢产物生物合成通路及关键酶的结构与催化机制,并结合酶学和合成生物学开展生物合成体系的工程化改造。
[1] 国家自然科学基金;批准年度:2018年;项目起止年月:2018-01至2021-12(已结题,参与)
[2] 中山大学“百人计划”启动项目;批准年度:2020年;项目起止年月:2020-06至2023-06(主持)
[3] 国家自然科学基金青年科学基金项目;批准年度:2019年;项目起止年月:2020-01至2021-12(已结题,主持)
[4] 广东省恶性肿瘤表观遗传与基因调控重点实验室开放课题专项基金;批准年度:2021年;项目起止年月:2021-02至2022-12 (已结题,主持)
[5] 中山大学青年教师培育项目(重点项目);2023年;项目起止年月:2023-08至2023-12 (已结题,主持)
[6] 广东省卫健委“特支计划”青年拔尖人才项目;2024年;项目起止年月:2024-10至2027-10 (在研,主持)
[7] 国家重大科技基础设施项目-单细胞测序酶研发;项目起止年月:2025-08至2027-07. (参与)
2009-2010年 国家奖学金
2010-2011年 国家奖学金
2011-2012年 国家奖学金
2016-2017年 国家奖学金
2018年 上海市优秀毕业生
2024年 广东省重大人才工程项目
1)Meng, C.#, Shi, X.#, Guo, W.#, Jian X.#, Zhao, J. Wen, Y., Wang, R., Li, Y., Xu, S., Chen, H., Zhang, J.*, Chen, M.*, Chen, H.*, Wu, B*. (2025) Structural analysis of ASCH domain-containing proteins and their implications for nucleotide processing. Structure. 2025 Dec 4;33(12):2095-2108.e5.
2)Yu, J.#, Liang, Y.#, Zhang, Q.#, Ding, H.#, Zhang, Q., Xie, M., Zhang, J., Hu, W., Xu, S., Xiao, Y., Xu, S., Na, R.*, Wu, B.*, Zhou, J.*, Chen, H.* (2025) The interplay between human genetics and intratumoral microbiota in the progression of colorectal cancer. Cell Host & Microbe. 2025 May 14; (33) 1-14.
3)Li, X. #, Guo W. #, Wen, Y. #, Meng, C., Zhang, Q., Chen, H., Zhao, X.*, Wu, B.* (2025) Molecular basis for the RNA binding properties of IGF2BP3 tandem RBDs. Structure. 2025 Apr 3;33(4):771-785.e3.
4)Meng, C. #, Guo, W. #, Xiao, C. #, Wen, Y. #, Zhu, X., Zhang, Q., Liang, Y., Li, H., Xu, S., Qiu, Y. *, Chen, H. *, Lin, WJ. *, Wu, B.* (2025) Structural Basis for Psilocybin Biosynthesis. Nature Communications. 2025 Mar 22;16(1):2827.
5)Wen, Y.#, Guo, W.#, Meng, C., Yang, J., Xu, S., Chen, H.*, Gan, J.*, Wu, B.*. Structural insights into the biosynthetic mechanism of Nα-GlyT and 5-NmdU hypermodifications of DNA. Nucleic Acids Research. 2024 Oct 14;52(18):11083-11097.
6)Guo, W.#, Wu, W.#, Wen, Y., Gao, Y., Zhuang, S., Meng, C., Chen, H., Zhao, Z.*, Hu, K.*, Wu, B.*. Structural insights into the catalytic mechanism of the AP endonuclease AtARP. Structure. 2024. 32, 1-15
7)Liu, D.; Dredge, B. K.; Bert, A.; Pillman, K.; Toubia, J.; Guo, W.; Dyakov, B. J.A.; Migault, M.; Conn, V. M.; Conn, S. J.; Gregory, P. A.; Gingras, A-C; Patel, D.; Wu, B.*; Goodall, G.*, ESRP1 controls biogenesis and function of a large abundant multiexon circRNA. Nucleic acids research. 2024 Feb 9;52(3):1387-1403.
8)Guo, W.#; Li, X.#; Fan, J.#; Li, H.#; Wen, Y.; Meng, C.; Zhu, X.; Chen, H.; Zhang, Y.; Du, Y.*; Wu, B.*, Structural characterization of an isocytosine-specific deaminase VCZ reveals its application potential in the anti-cancer therapy. iScience. 2023, 26(9):107672
9)Li, X. #, Li, K. #, Guo, W., Wen, Y., Meng, C., Wu, B.*. (2022) Structure characterization of E. coli pseudouridine kinase PsuK. Frontiers in Microbiology. 2022; 13:926099.
10)Wen Y.#, Li X.#, Guo W, Wu B*. Crystal structures of a new class of pyrimidine/purine nucleoside phosphorylase revealed a Cupin fold. Proteins. 2022; 90(6):1233-1241.
11)Liu Y.#, Zhang L.#, Guo M., Chen L., Wu B*, Huang H.*. (2021) Structural basis for anti-CRISPR repression mediated by Aca1 and Aca2. Journal of Biological Chemistry. 2021.Dec;297(6):101357.
12)Hou, Y.#, Sun J.#, Wu, B.#, Gao, Y.#, Nie H., Nie, Z., Quan, S., Wang Y.*, Cao, X*, Li, S.* (2021) CPSF30-L-mediated recognition of mRNA m6A modification controls alternative polyadenylation of nitrate signaling-related gene transcripts in Arabidopsis. Molecular Plant. 2021 Apr 5;14(4):688-699.
13)Wang, N.#, Bao, H.#, Chen, L., Liu, Y., Li, Y.,Wu, B.*, Huang H.*Molecular basis of abasic site sensing in single-stranded DNA by the SRAP domain of E. coli yedK. Nucleic acids research. 2019 Nov 4;47(19):10388-10399.
14)Wu, B.#,*, Zhang, D.#, Nie, H.#, Shen, S., Li, Y., Li, S.* (2019) Structure of Arabidopsis thaliana N6-methyl-AMP deaminase ADAL with bound GMP and IMP and implications for N6-methyl-AMP recognition and processing, RNA Biology, 16:10, 1504-1512
15)Qiu, Q.#, Mei, H.#, Deng, X.#, He, K.#, Wu, B.#, Yao, Q., Zhang J., Lu, F., Ma, J.*, Cao, X.*(2019) DNA methylation repels targeting of Arabidopsis REF6. Nature Communications. (2019) 10:2063
16)Wu, B.,# Su, S.,# Deepak P. Patil, Liu, H., Gan, J., Samie R. Jaffrey, Ma, J.* (2018) Molecular Basis for The Specific and Multivariate Recognitions of RNA Substrates by Human hnRNPA2/B1. Nature Communications. 9(1):420.
17)Li, W.#, Wu, B.#, Soca, WA., An, L.* (2018) Crystal Structure of Classical Swine Fever Virus NS5B Reveals a Novel N-terminal Domain. Journal of Virology. 92(14). pii: e00324-18.
18)Li, Y.#, Wu, B.#, Liu, H., Gao, Y., Yang C., Chen X., Zhang, J., Chen, Y., Gu, Y., Li, J., Ma, J., Gan, J.* (2018) Structural insights into target DNA recognition by the double homeodomains of human DUX4. Biochemical and Biophysical Research Communications. 2018, 505(4):1161-1167
19)Wu, B.#,*, Zhang, M.#, Su, S., Liu, H., Gan, J., Ma, J.* (2018) Structural insight into the role of VAL1 for targeting to FLC locus in Arabidopsis thaliana. Biochemical and Biophysical Research Communications. 501(2):415-422
20)Wu, B., Li, L., Huang, Y*., Ma, J*., Min J*. (2017). Readers, writers and erasers of N6-methylated adenosine modification, Current Opinion in Structural Biology. 47:67-76.
21)Wu, B. #,*, Xu, J., Su, S., Liu, H., Gan, J., Ma, J.* (2017) Structural insights into the specific recognition of DSR by the YTH domain-containing protein Mmi1. Biochemical and Biophysical Research Communications. 2017, 491(2):310-316.
参与作者:
1)Yang, M., Ou, T., Wang, L., Zhou, L., Qiu, Z., He, Y., Ren,Y., Huang, L., Wu, B., Orre, L., Lehtiö, J., Dong, W., Wong, PP., Zhu, Y. Phosphorylation of Intrinsically disordered protein FAM246C Drives DDX21 Phase Separation and Remodels Translational Programs to Suppress Tumor Progression in ccRCC. (Under Review)
2)Duan, M.#, Wen, J. #, Cen, Z.#, Yang, L.#, Huang, L., Liu, S., Wang, Y., Zhang, Y., Zhou, L., Yuan, L., Jiang, X., Huang, K., Huang, L., Liu, Y., Meng, C., Jian, X., Liu, Y., Lin, J., Zeng, R., Chen, Y., Cen, M., Guo, C., Jia, S., Yan, Y., Chen, A., Lin, L., Zou, X., Huang, X., Wu, H., Liu, C., Zhang, W., Liang, Y., Zheng, L., Zhang, X., Chen, Y., Zheng, J., Zhou, T., Zhu, Y., Dai, L., Saw, P., Gu, L., Tian, X., Zhang, Y., Guan, D., Zhu, Y., Zheng, J., Li, Z., Ren, M., Liu, F., Wu, B., Chen, Y., Yan, L., Chen,S.*. Gut microbiota aggravate ischemic stroke via non-host homologous microbial isoenzyme-catalyzed metabolite 2-methylbutyrylcarnitine. (Under Review)
3)Qi, X.#, Cui, D.#, Li, X.#, Fu, W.#, Ma, H.#, Guo, W., Wang, J., Song, J., Ma, J., Yang, J., Yu, H., Hong, Yu., Wang, Q., Luo, S., Wang, J., Wu, B., Li, S., Cheng, H., Cheng, M., Li, B., Zhang, K., Li, J.*, Li, F.*. Targeting Nat10 reprograms regulatory T cells function to enhance anti-PD-1 immunotherapy sensitivity in lung cancer. The Journal of Clinical Investigation. 2026
4)Zhang, X.#, Huang, P.#, Chen, H.#, Yang, C.#, Yang, X., Liu, Y., Wu, B., Zeng, W., Saw, PE., Ye, S., Li, J., Wang, J., Wu, Z., Wang, J., Li, H., Huang, JD., Zeng, M., Li, M., Liu, Q., Su, S., Song, E.*, Chen, J.*. (2025) Chemotherapy-induced CA-repeat DNA fragments in breast cancer trigger robust immune responses. Nature Immunology. 2025 Nov;26(11):1931-1945.
5)Shen, Y.#, Liu, Y.#, Guo, M.#, Mao, S., Chen, R., Wang, M., Li2, Z., Li, Y., Chen, W., Chen, F., Wu, B., Wang, C., Chen, W., Cui, H.*, Yuan, K.*, Huang, H.*. DEK–nucleosome structure shows DEK modulates H3K27me3 and stem cell fate. Nature Structural & Molecular Biology. 2025 Jul;32(7):1193-1204.
6)Mao, Y.#, Zhang, J.#, Zhou, Q.#, He, X.#, Zheng, Z., Wei, Y., Zhou, K. Lin, Y., Yu, H., Zhang, H., Zhou, Y., Lin, P., Wu, B., Yuan, Y., Zhao, J., Xu, W.*, Zhao, S.*. (2024) Hypoxia Induces Mitochondrial Protein Lactylation to Limit Oxidative Phosphorylation. Cell Research. 2024. Jan;34(1):13-30.
7)Su, S.#, Li, S.#, Deng, T.#, Gao, M., Yin, Y., Peng C., Wu, B., Liu, J., Ma, J.*, Zhang, K.* Structural insights into human m6A-METTL associated complex. Cell Research (2022) 0:1–13.
8)Zhou, Q.#, Sun, WW. #, Chen, JC., Zhang, HL., Liu, J., Lin, Y., Lin PC., Wu, BX., An, YP., Huang L., Sun WX., Zhou, XW., Li, YM., Yuan, YY., Zhao, JY., Xu, W*., Zhao, SM.* Phenylalanine Impairs Insulin Signaling and Inhibits Glucose Uptake by Modifying IRβ. Nature Communications. 2022; 13(1):4291.
9)Liu, Y., Chen, L., Wang, N., Wu, B., Bao, H.*, Huang, H.* Structural basis for histone H3 recognition by NASP in Arabidopsis. Journal of Integrative Plant Biology. 2022 Dec;64(12):2309-2313.
10)Yu, J.#, He, Z.#, He, X. Luo, Z., Lian, L., Wu, B., Lan, P.* and Chen, H.* (2021) Comprehensive Analysis of the Expression and Prognosis for MMPs in Human Colorectal Cancer. Frontiers in Oncology 2021 Nov 5; 11:771099.
11)Yang, Y. #, Wang, L.#, Han, X.#, Yang, W-L.#, Zhang, M.#, Ma, H-L., Sun, B-F., Li, A., Xia, J., Chen, J., Heng, J., Wu, B., Chen, Y-S., Xu, J-W., Yang, X., Yao, H., Sun, J., Lyu, C., Wang, H-L., Huang, Y, Sun, Y-P., Zhao, Y-L., Meng, A., Ma, J.*, Liu, F.*, Yang, Y-G.* (2019) RNA 5-Methylcytosine Facilitates the Maternal-to-Zygotic Transition by Preventing Maternal mRNA Decay. Molecular Cell. 75, 1188–1202
12)He, J. #, Ye, W.#, Choi, D.#, Wu, B., Zhai, Y., Guo, B., Duan, S., Wang, Y., Gan, J., Ma, W.*, Ma, J.* (2019) Structural analysis of Phytophthora suppressor of RNA silencing 2 (PSR2) reveals a conserved modular fold contributing to virulence. Proc. Natl. Acad. Sci. U.S.A. 16;116(16):8054-8059.
13)Yao, Q.#, Cao, G.#, Li, M., Wu, B, Zhang, X, Zhang, T., Guo, J., Yin, H, Shi, L., Chen, J, Yu, X., Zheng, L., Ma, J.*, Su, Y.*. (2018) Ribonuclease activity of MARF1 controls oocyte RNA homeostasis and genome integrity in mice. Proc. Natl. Acad. Sci. U.S.A. 115(44):11250-11255.
14)Liu, H., Wang, R., Yu, X., Shen, F., Lan, W., Haruehanroengra, P., Yao, Q., Zhang, J., Chen, Y., Li, S., Wu, B., Zheng, L., Ma, J., Lin, J., Cao, C.*, Li, J.*, Sheng, J.*, Gan, J.*. (2018). High-resolution DNA quadruplex structure containing all the A-, G-, C-, T-tetrads. Nucleic acids research. 46(21):11627-11638
15)Liu, H.#, Yu, X.#, Chen, Y., Zhang, J., Wu, B., Zheng, L., Haruehanroengra, P., Wang, R., Li, S., Lin, J., Li, J., Sheng, J., Huang, Z. *, Ma, J. *, Gan, J. * (2017) Crystal structure of an RNA-cleaving DNAzyme. Nature Commnications. 8(1):2006
16)Liu, H., Shen, F., Haruehanroengra, P., Yao, Q., Cheng, Y., Chen, Y., Yang, C., Zhang, J., Wu, B., Luo, Q., Cui, R., Li, J., Ma, J. *, Sheng, J. *, and Gan, J. * (2017) A novel DNA structure containing AgI-mediated G:G and C:C Base Pairs. Angew. Chem. Int. Ed. 56(32):9430-9434.
17)Liu, H., Cai, C., Haruehanroengra, P., Yao, Q., Chen, Y., Yang, C., Luo, Q., Wu, B., Li, J., Ma, J. *, Sheng, J. *, Gan, J*. (2017) Flexibility and stabilization of HgII-mediated C: T and T: T base pairs in DNA duplex. Nucleic acids research. 45(5):2910-2918.
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19)Liang, Q., Zhang X., Wei, Q., Wang, X., Zhang J., Sun, D., Fu X., Wu B., Nie, H., (2011) Establishment and Application of Multiplex PCR System Based on Molecular Markers for Glutenin Subunit Genes (Locus) in Wheat. Acta. Agron. Sin. 37(11):1942-1948
专利:
1)吴柏星,郭文婷,李晓嘉,李鸿炜;异胞嘧啶脱氨酶 VCZ 蛋白的结晶方法及其应用;专利申请号:202310863833.X;
2)吴柏星,温彦,杨林槟,曾嘉毅;人源 CCDC25 蛋白与 dsDNA 复合物的三维晶体结构、结晶方法和应用;专利申请号:202410626672.7;
3)吴柏星,孟春艳,郭文婷,温彦;裸盖菇 PsiK 蛋白与 ADP-色胺-Mg2+复合物的三维晶体结构、结晶方法和应用;专利申请号:202411853365.9;
4)吴柏星,孟春艳,郭文婷,温彦;裸盖菇 PsiD 蛋白截短体与色胺复合物的三维晶体结构、结晶方法和应用;专利申请号:202411853417.2;
5)吴柏星,孟春艳,郭文婷,温彦;裸盖菇 PsiM 蛋白、SAH 和 Norbaeocystin 复合物的三维晶体结构及应用;专利申请号:202411853472.1;
6)张玉玲,吴柏星,李鸿炜,温可馨;一种环状RNA的制备方法;专利申请号:202410182401.7;(国际申请号PCT/CN2024/077416);
7)吴柏星,张玉玲,李鸿炜,温可馨;一种环状多倍串联RNA正义链;专利申请号:202410305556.5(国际申请号PCT/CN2024/077414);
8)张玉玲,吴柏星,李鸿炜,温可馨;一种环状多倍串联的PCSK9 siRNA;专利申请号:202410182394.0;(国际申请号PCT/CN2024/077415);



