九游平台_九游(中国)

姓  名: 郭 帆
学  科: 发育生物学
电话/传真:  / 
电子邮件: guofan@ioz.ac.cn
通讯地址: 北京市朝阳区大屯路甲3号 干细胞与再生医学研究院 100101
更多信息: 生殖表观遗传研究组     

简历介绍:

2008年获得武汉大学学士学位,2014年获得中国科学院大学博士学位(导师:徐国良),随后在北京大学从事博士后研究工作(合作导师:汤富酬);2017年3月至2021年4月在四川大学担任研究员、课题组长PI、博士生导师(获优秀青年科学基金资助,2018年);2021年5月起任九游平台_九游(中国)研究员、器官再生与智造全国重点实验室PI(获国家杰出青年科学基金资助,2023年)。研究方向为早期胚胎发育及异常的表观遗传调控,代表性研究论文发表于Nature、Cell、Nature Genetics、Cell Stem Cell、Nature Cell Biology、Cell Research、Cell Discovery等期刊;研究工作入选中国科学十大进展、中国生命科学十大进展、中国医学重大进展。获2017年度九游平台_九游(中国)部重大人才项目奖励计划青年学者,2025年度中国科学院人才计划终期评估优秀;第五届妇幼健康科学技术奖自然科学奖一等奖(第二完成人),2024年度北京市科学技术奖自然科学二等奖(第二完成人),2025年度中国科学院杰出科技成就奖基础研究奖(第三完成人)等奖励。

研究领域:

多细胞生命的发育起始于单个受精卵,经过细胞连续分裂和分化,形成多种组织和器官类型,最终发育为成熟个体。虽然生物体各种细胞具有相同的基因组序列,但复杂的转录网络驱动了细胞类型的多样性,并在多细胞生物的发育过程中反映出分化细胞的特定表型。信号转导途径、转录因子和表观遗传调控之间的相互作用决定了细胞的基因表达模式,且一旦生物体发育完全,这种模式通常需要相对稳定地维持。表观遗传是指在基因的DNA序列没有发生改变的情况下,基因表达发生了功能性变化,并最终导致了可遗传表型的产生;因素包括DNA和组蛋白的共价修饰,染色质构象和高级结构,非编码RNA等。表观遗传调控在生物体发育和疾病发生过程中至关重要,其对染色质包装及基因转录活性的改变将影响多能性的建立与维持、细胞命运决定与谱系分化、细胞功能与稳态调节等。虽然多种类型的表观遗传修饰及其相关调节因子已被报道,但其在生理与病理状态下的动态与功能作用仍有待深入研究。九游平台_九游(中国)实验室围绕三个主要内容,即发育过程中的表观遗传编程与重编程,细胞命运决定与转变过程中的表观遗传调控,疾病演变与发展过程中的表观遗传基。焕们把氐姆肿由镅Х椒、成像技术、算法工具、人工智能和胚胎模型等,研究表观遗传及其与发育和疾病的复杂关系。

社会任职:

中国细胞生物学学会生殖细胞生物学分会,常务委员

中国细胞生物学学会发育生物学分会,委员

中国生物物理学会生殖遗传与子代健康分会,委员

中国动物学会生殖生物学分会,委员

中国遗传学会青年委员会,委员

获奖及荣誉:

承担科研项目情况:

国家杰出青年科学基金项目,优秀青年科学基金项目,创新研究群体项目,面上项目;国家重点研发计划项目;中国科学院战略性先导科技专项等。

代表论著:

*通讯作者

生殖细胞和早期胚胎发育的DNA甲基化与羟甲基化调控

  1. Yan, R., X. Cheng, X. Long, Y. Zhu, Q. Zhang, F. Sun, F. Zhang, M. Wang, R. Zhang, T. Guo, X. Hou, D. Ji, Y. Cao, F. Gao, D. Liang* and F. Guo* (2026). “Selective cellular localization of UHRF1?safeguards mammalian zygotic genome activation and early embryonic development.” Cell Discovery?(accepted)
  2. Xiang, Z., R. Yan, J. Guo, M. Wang, X. Cheng, F. Zhang, T. Guo, X. Long, F. Guo* and D. Liang* (2025). “5-Hydroxymethylcytosine dynamics reveals coordinated reprogramming of parental genomes and X chromosome dosage balance in mouse SCNT embryos.” Advanced Science?13(6): e09682.
  3. Liang, D*., R. Yan, X. Long, D. Ji, B. Song, M. Wang, F. Zhang, X. Cheng, F. Sun, R. Zhu, X. Hou, T. Wang, W. Zou, Y. Zhang, Z. Pu, J. Zhang, Z. Zhang, Y. Liu, Y. Hu, X. He*, Y. Cao* and F. Guo* (2024). “Distinct dynamics of parental 5-hydroxymethylcytosine during human preimplantation development regulate early lineage gene expression.” Nature Cell Biology?26(9): 1458-1469.
  4. Zhang, X. J., B. B. Han, Z. Y. Shao, R. Yan, J. Gao, T. Liu, Z. Y. Jin, W. Lai, Z. M. Xu, C. H. Wang, F. Zhang, C. Gu, Y. Wang, H. Wang, C. P. Walsh, F. Guo, G. L. Xu* and Y. R. Du* (2024). “Auto-suppression of Tet dioxygenases protects the mouse oocyte genome from oxidative demethylation.” Nature Structural & Molecular Biology?31(1): 42-53.
  5. Yan, R., X. Cheng, C. Gu, Y. Xu, X. Long, J. Zhai, F. Sun, J. Qian, Y. Du, H. Wang* and F. Guo* (2022). “Dynamics of DNA hydroxymethylation and methylation during mouse embryonic and germline development.” Nature Genetics?55(1): 130-143.
  6. Yan, R., C. Gu*, D. You, Z. Huang, J. Qian, Q. Yang, X. Cheng, L. Zhang, H. Wang, P. Wang* and F. Guo* (2021). “Decoding dynamic epigenetic landscapes in human oocytes using single-cell multi-omics sequencing.” Cell Stem Cell?28(9): 1641-1656.
  7. Gu, C., S. Liu, Q. Wu, L. Zhang and F. Guo* (2019). “Integrative single-cell analysis of transcriptome, DNA methylome and chromatin accessibility in mouse oocytes.” Cell Research?29(2): 110-123. Cover story
  8. Li, L., F. Guo?(co-first), Y. Gao, Y. Ren, P. Yuan, L. Yan, R. Li, Y. Lian, J. Li, B. Hu, J. Gao, L. Wen, F. Tang and J. Qiao (2018). “Single-cell multi-omics sequencing of human early embryos.” Nature Cell Biology?20(7): 847-858. Cover Highlight
  9. Guo, F.*, L. Li, J. Li, X. Wu, B. Hu, P. Zhu, L. Wen and F. Tang* (2017). “Single-cell multi-omics sequencing of mouse early embryos and embryonic stem cells.” Cell Research?27(8): 967-988. Cover story
  10. Guo, F., L. Yan, H. Guo, L. Li, B. Hu, Y. Zhao, J. Yong, Y. Hu, X. Wang, Y. Wei, W. Wang, R. Li, J. Yan, X. Zhi, Y. Zhang, H. Jin, W. Zhang, Y. Hou, P. Zhu, J. Li, L. Zhang, S. Liu, Y. Ren, X. Zhu, L. Wen, Y. Q. Gao, F. Tang and J. Qiao (2015). “The Transcriptome and DNA Methylome Landscapes of Human Primordial Germ Cells.” Cell?161(6): 1437-1452. Cover story
  11. Guo, F., X. Li, D. Liang, T. Li, P. Zhu, H. Guo, X. Wu, L. Wen, T. P. Gu, B. Hu, C. P. Walsh, J. Li, F. Tang and G. L. Xu (2014). “Active and passive demethylation of male and female pronuclear DNA in the mammalian zygote.” Cell Stem Cell?15(4): 447-459.
  12. Gu, T. P., F. Guo?(co-first), H. Yang, H. P. Wu, G. F. Xu, W. Liu, Z. G. Xie, L. Shi, X. He, S. G. Jin, K. Iqbal, Y. G. Shi, Z. Deng, P. E. Szabo, G. P. Pfeifer, J. Li and G. L. Xu (2011). “The role of Tet3 DNA dioxygenase in epigenetic reprogramming by oocytes.” Nature?477(7366): 606-610.

器官发生、稳态维持与衰老

  1. Zhang, F. and F. Guo* (2025). “Cultured human stem cells undergoing gastrulation.” Cell Research?35(10): 695-696.?(Research Highlight)
  2. Huang, J., B. He, X. Yang, X. Long, Y. Wei, L. Li, M. Tang, Y. Gao, Y. Fang, W. Ying, Z. Wang, C. Li, Y. Zhou, S. Li, L. Shi, S. Choi, H. Zhou*, F. Guo*, H. Yang* and J. Wu* (2024). “Generation of rat forebrain tissues in mice.” Cell?187(9): 2129-2142.
  3. Yan, L., W. Tu, X. Zhao, H. Wan, J. Wu, Y. Zhao, J. Wu, Y. Sun, L. Zhu, Y. Qin, L. Hu, H. Yang, Q. Ke, W. Zhang, W. Luo, Z. Xiao, X. Chen, Q. Wu, B. He, M. Teng, S. Dai, J. Zhai, H. Wu, X. Yang, F. Guo?and H. Wang* (2024). “Stem cell transplantation extends the reproductive life span of naturally aging cynomolgus monkeys.” Cell Discovery?10(1): 111.
  4. Zhai, J., Y. Xu, H. Wan, R. Yan, J. Guo, R. Skory, L. Yan, X. Wu, F. Sun, G. Chen, W. Zhao, K. Yu, W. Li*,?F. Guo*, N. Plachta* and H. Wang* (2023). “Neurulation of the cynomolgus monkey embryo achieved from 3D blastocyst culture.” Cell?186(10): 2078-2091.?Cover story
  5. Zhang, Q., B. Yao, X. Long, Z. Chen, M. He, Y. Wu, N. Qiao, Z. Ma, Z. Ye, Y. Zhang, S. Yao, Y. Wang, H. Cheng, H. Chen, H. Ye, Y. Wang, Y. Li, J. Chen, Z. Zhang*, F. Guo*?and Y. Zhao* (2023). “Single-cell sequencing identifies differentiation-related markers for molecular classification and recurrence prediction of PitNET.” Cell Reports Medicine?4(2): 100934.
  6. Chen, M., X. Long, M. Chen, F. Hao, J. Kang, N. Wang, Y. Wang, M. Wang, Y. Gao, M. Zhou, L. Duo, X. Zhe, J. He, B. Ren, Y. Zhang, B. Liu, J. Li, Q. Zhang, L. Yan, X. Cui, Y. Wang, Y. Gui, H. Wang, L. Zhu*, D. Liu*, F. Guo* and F. Gao* (2022). “Integration of single-cell transcriptome and chromatin accessibility of early gonads development among goats, pigs, macaques, and humans.” Cell Reports?41(5): 111587.
  7. Zhai, J., J. Guo, H. Wan, L. Qi, L. Liu, Z. Xiao, L. Yan, D. A. Schmitz, Y. Xu, D. Yu, X. Wu, W. Zhao, K. Yu, X. Jiang*, F. Guo*, J. Wu* and H. Wang* (2022). “Primate gastrulation and early organogenesis at single-cell resolution.” Nature?612(7941): 732-738.
  8. Zhou, C., Y. Sun, R. Yan, Y. Liu, E. Zuo, C. Gu, L. Han, Y. Wei, X. Hu, R. Zeng, Y. Li*, H. Zhou*, F. Guo* and H. Yang* (2019). “Off-target RNA mutation induced by DNA base editing and its elimination by mutagenesis.” Nature?571(7764): 275-278.
  9. Chen, X., J. Zhao, C. Gu, Y. Cui, Y. Dai, G. Song, H. Liu, H. Shen, Y. Liu, Y. Wang, H. Xing, X. Zhu, P. Hao, F. Guo* and X. Liu* (2018). “Med23 serves as a gatekeeper of the myeloid potential of hematopoietic stem cells.” Nature Communications?9(1): 3746.

写给考生的话:

2024年招生视频:https://mp.weixin.qq.com/s/fuf3511NDDCIHz-w2grTqQ

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