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1.Jin, Z, Jian L, et al.(2020).Crystal structure of SARS-CoV-2 main protease in complex with a Chinese herb inhibitor shikonin .bioRxiv, doi:10.1101/2020.06.16.155812.(通讯作者)

2.Jin ZhangJian al.(2020).Structure of SARS-CoV-2 main protease in the apostate reveals the inactive conformation.bioRxiv,doi:10.1101/2020.05.12.092171.(通讯作者)

3.Duan J, Li J, GL Chen, X Peng, Y Zhang, JB Wang, Clapham DE, B Zeng#, Li Z#, Zhang J#. (2019). Cryo-EM structure of TRPC5 at 2.8 Å resolution reveals unique and conserved structuralelements essential for channel function. Science Advances Jul 24;5(7):eaaw7935 (# 通讯作者) (IF:12.804)

4.Chen, Y., Zhang, X., Yang, T., Bi, R., Huang, Z., Ding, H., Li, J#., Zhang, J#. (2019). Emerging structural biology of TRPM subfamily channels. Cell Calcium, 79, 75-79. doi:10.1016/j.ceca.2019.02.011 (# 通讯作者) (IF:3.932)

5.Li, J., Zhang, X., Song, X., Liu, R., Zhang, J#., & Li, Z#. (2019). The structure of TRPC ion channels. Cell Calcium, 80, 25-28. doi:10.1016/j.ceca.2019.03.005 (#通讯作者)(IF:3.932)

6.Duan J, Li J, B Zeng, GL Chen, X Peng, Y Zhang, JB Wang, Clapham DE, Li Z#, Zhang J#. (2018). Structure of the mouse TRPC4 ion channel. Nature Communications Aug 6;9(1):3102. (# 通讯作者)(IF:11.878)

7.Duan J, Li Z, Li J, Hulse R, Santa-Cruz A, Valinsky W, Abiria S, Krapivinsky G, Zhang J#, Clapham DE#. (2018). Structure of the mammalian TRPM7, a magnesium channel required during embryonic development. Proc Natl Acad Sci U S A Aug 28;115(35):E8201-E8210. (# 通讯作者) (IF:9.580)

8.Duan J, Li Z, Li J, Santa-Cruz A, Sanchez-Martinez S, Zhang J#, Clapham DE#. (2018). Structure of full-length human TRPM4. Proc Natl Acad Sci U S A 115: 2377-82 (# 通讯作者) (IF:9.580)

9. Hulse RE, Li Z, Huang RK, Zhang J, Clapham DE. (2018). Cryo-EM structure of the polycystin 2-l1 ion channel. Elife 7 (IF:7.551)

10.Chen, J., Fu, Y., Day, D. S., Sun, Y., Wang, S., Liang, X., Gu, F., Zhang, F., Stevens, S. M., Zhou, P., Li, K., Zhang, Y., Lin, R. Z., Smith, L. E. H., Zhang, J., Sun, K., Melero-Martin, J. M., Han, Z., Park, P. J., Zhang, B., Pu, W. T. (2017). VEGF amplifies transcription through ETS1 acetylation to enable angiogenesis. Nature Communications. 81, 383(IF:11.878)

11. Abiria, S. A., Krapivinsky, G., Sah, R.,Santa-Cruz, A. G.,Chaudhuri, D., Zhang, J., Adstamongkonkul, P., DeCaen, P. G., Clapham, D. E. (2017). TRPM7 senses oxidative stress to release Zn2+ from unique intracellular vesicles. Proc Natl Acad Sci, 114, 30, E6079-E6088 (IF:9.580)

12.Lin, Z., Guo, H., Cao, Y., Zohrabian, S., Zhou, P., Ma, Q., VanDusen, N., Guo, Y., Zhang, J., Stevens, S.M., et al. (2016). Acetylation of VGLL4 Regulates Hippo-YAP Signaling and Postnatal Cardiac Growth. Dev Cell. (IF:9.190)

13. Zhang, J*., Zhang, K*., Gao, Z.G., Paoletta S., Zhang, D., Han, G.W., Li T., Ma L., Zhang W., Müller C.E., Yang H., Jiang H., Cherezov, V., Katritch, V., Jacobson, K.A., Stevens, R.C., Wu B., and Zhao Q. (2014). Agonist-bound structure of the human P2Y12 receptor. Nature, 509, 119-22. (*equally contributed to the work) (IF:43.070)

14.Zhang, K*., Zhang, J*., Gao, Z.-G., Zhang, D., Zhu, L., Han, G.W., Moss, S.M., Paoletta, S., Kiselev, E., Lu, W., et al. (2014). Structure of the human P2Y12 receptor in complex with an antithrombotic drug. Nature, 509, 115-8. (*equally contributed to the work) (IF:43.070)

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