Contact information

Email:huangguoqiang@tsinghua.edu.cn

Guoqiang Huang

2021, National Scholarship
2025, Excellenct Scholar, Beijing Frontier Research Center for Biological Structure, Tsinghua University
2025, Shuimu Scholar, Tsinghua University

Resume

2013.9-2017.6 School of Life Science and Engineering, Southwest Jiaotong University, Bachelor

2017.9-2023.6 School of Life Sciences, Tsinghua University, Ph.D.

2023.7-2024.10 Multiscale Research Institute for Complex Systems, Fudan University, Research Fellow

2024.12-present School of Life Sciences, Tsinghua University, Postdoctoral Researcher

Main Research Fields

Structural and Functional Studies of Photosynthesis-Related Protein Complexes Using Cryo-EM and Cryo-ET

Selected Publications

1.    Huang, G.*, Dong, S.*, Ma, L.*, Li, L., Ju, J., Wang, M. J., Zhang, J. P., Sui, S. F., & Qin, X. (2025). CryoEM structure of a minimal reaction center–lightharvesting complex from the phototrophic bacterium Chloroflexus aurantiacus. Journal of Integrative Plant Biology. 67(4):967-978. (*Co-first Author)

2.    Li, X.*, Huang, G.*, Zhu, L., Hao, C., Sui, S.-F., & Qin, X. (2024). Structure of the red-shifted Fittonia albivenis photosystem I. Nature Communications, 15(1), 6325. (*Co-first Author)

3.    Li, Z.*, Chen, S.*, Zhao, L., Huang, G., Xu, H., Yang, X., Wang, P., Gao, N., & Sui, S.-F. (2023). Nuclear export of pre-60S particles through the nuclear pore complex. Nature, 618(7964), 411-418.

4.    Dong, S.*, Huang, G.*, Wang, C.*, Wang, J., Sui, S.-F., & Qin, X. (2022). Structure of the Acidobacteria homodimeric reaction center bound with cytochrome c. Nature Communications, 13(1), 7745. (*Co-first Author)

5.    Mi, C.*, Zhang, L.*, Huang, G.*, Shao, G., Yang, F., You, X., Dong, M.-Q., Sun, S., & Sui, S.-F. (2022). Structural basis for assembly of TRAPPII complex and specific activation of GTPase Ypt31/32. Science Advances, 8(4), eabi5603. (*Co-first Author)

6.    Li, Z.*, Chen, S.*, Zhao, L.*, Huang, G.*, Pi, X., Sun, S., Wang, P., & Sui, S.-F. (2022). Near-atomic structure of the inner ring of the Saccharomyces cerevisiae nuclear pore complex. Cell Research, 32(5), 437-450. (*Co-first Author)

7.    Xiao, Y. *, Huang, G.*, You, X., Zhu, Q., Wang, W., Kuang, T., Han, G., Sui, S.-F., & Shen, J.-R. (2021). Structural insights into cyanobacterial photosystem II intermediates associated with Psb28 and Tsl0063. Nature Plants, 7(8), 1132-1142. (*Co-first Author)

8.    Huang, G.*, Xiao, Y.*, Pi, X.*, Zhao, L., Zhu, Q., Wang, W., Kuang, T., Han, G., Sui, S.-F., & Shen, J.-R. (2021). Structural insights into a dimeric Psb27-photosystem II complex from a cyanobacterium Thermosynechococcus vulcanus. Proceedings of the National Academy of Sciences, 118(5), e2018053118. (*Co-first Author)

9.    Xu, C.*, Pi, X.*, Huang, Y.*, Han, G., Chen, X., Qin, X., Huang, G., Zhao, S., Yang, Y., Kuang, T., Wang, W., Sui, S.-F., & Shen, J.-R. (2020). Structural basis for energy transfer in a huge diatom PSI-FCPI supercomplex. Nature Communications, 11(1), 5081.