代表性论文:(#co-first author, *corresponding/co-corresponding author)
(一) 通讯/共同通讯作者 1. Shang, Pan#; Rong, Naikang#; Jiang, Jing-Jing#; Cheng, Jie#; Zhang, Ming-Hui#; Kang, Dongwei#; Qi, Lei#; Guo, Lulu; Yang, Gong-Ming; Liu, Qun; Zhou, Zhenzhen; Li, Xiao-Bing; Zhu, Kong-Kai; Meng, Qing-Biao; Han, Xiang; Yan, Wenqi; Kong, Yalei; Yang, Lejin; Wang, Xiaohui; Lei, Dapeng; Feng, Xin; Liu, Xinyong; Yu, Xiao; Wang, Yue*; Li, Qian*; Shao, Zhen-Hua*; Yang, Fan*; Sun, Jin-Peng*. “Structural and signaling mechanisms of TAAR1 enabled preferential agonist design”. Cell, 2023, 186(24):5347-5362.e24. 2. Guo, Lulu#; Cheng, Jie#; Lian, Shuo#; Liu, Qun#; Lu, Yan#; Zheng, Yuan#; Zhu, Kongkai#; Zhang, Minghui;Kong, Yalei; Zhang, Chao; Rong, Naikang; Zhuang, Yuming; Fang, Guoxing; Jiang, Jingjing; Zhang, Tianyao;Han, Xiang; Liu, Zili; Xia, Ming; Liu, Shangming; Zhang, Lei; Liberles, Stephen D; Yu, Xiao; Xu, Yunfei*; Yang, Fan*; Li, Qian*; Sun, Jin-Peng*. “Structural basis of amine odorant perception by a mammal olfactory receptor”. Nature, 2023, 618(7963):193. 3. Guo, Lingna#; Dai, Wenxuan#; Xu, Zhengrong#; Liang, Qiaoyi; Miller, Eliot T; Li, Shengju; Gao, Xia; Baldwin, Maude W; Chai, Renjie*; Li, Qian*. “Evolution of brain-expressed biogenic amine receptors into olfactory trace amine-associated receptors”. Molecular Biology and Evolution, 2022, 39(3):msac006. 4. Zhou, Haiqian#; Zhuang, Liujing#; Bao, Hongqiang#; Li, Shengju; Dai, Fengyan; Wang, Ping; Li, Qian*; Yin, Dongmin*. “Olfactory regulation by dopamine and DRD2 receptor in the nose”. PNAS, 2022, 119(11):e2118570119. 5. Song, Chunxue; Zeng, Xianting; Zeng, Wanxin; Liu, Rong; Tong, Xiajing*; Li, Qian*. “A WDR47 homolog facilitates ciliogenesis by modulating intraflagellar transport”. Journal of Cell Science, 2022, 135(24):jcs260303. 6. Zhang, Qianwen#; Ding, Yu#; Feng, Biyun; Tang, Yijun; Chen, Yao; Wang, Yirou; Chang, Guoying; Liu, Shijian; Wang, Jian; Li, Qian*; Fu, Lijun*; Wang, Xiumin*. “Molecular and phenotypic expansion of Alström syndrome in Chinese patients”. Frontiers in Genetics, 2022, 13:808919. 7. Xu, ZhengRong#; Guo, LingNa#; Qian, XiaoYun#; Yu, ChenJie#; Li, ShengJu; Zhu, ChengWen; Ma, XiaoFeng; Li, Hui; Zhu, GuangJie; Zhou, Han; Dai, WenXuan*; Li, Qian*; Gao, Xia*. “Two entry tunnels in mouse TAAR9 suggest the possibility of multi-entry tunnels in olfactory receptors”. Scientific Reports, 2022, 12(1):2691. 8. Fei, Aimei#; Wu, Wanqing#; Tan, Longzhi#; Tang, Cheng#; Xu, Zhengrong; Huo, Xiaona; Bao, Hongqiang; Johnson, Mark; Hartmann, Griffin; Talay, Mustafa; Yang, Cheng; Riegler, Clemens; Joseph, Kristian; Engert, Florian; Xie, X Sunney; Barnea, Gilad; Liberles, Stephen D; Yang, Hui; Li, Qian*. “Coordination of two enhancers drives expression of olfactory trace amine-associated receptors”. Nature Communications, 2021, 12(1): 3798. 9. Qian, Kang-Ying; Zeng, Wan-Xin; Hao, Yue; Zeng, Xian-Ting; Liu, Haowen; Li, Lei; Chen, Lili; Tian, Fu-Min; Chang, Cindy; Hall, Qi; Song, Chun-Xue; Gao, Shangbang; Hu, Zhi-Tao; Kaplan, Josh M; Li, Qian*; Tong, Xia-Jing*. “Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner”. eLife, 2021, 10: e67170. 10. Jia, Liang#; Li, Shengju#; Dai, Wenxuan; Guo, Lingna; Xu, Zhengrong; Scott, Anne M; Zhang, Zhe; Ren, Jianfeng; Zhang, Qinghua; Dexheimer, Thomas S; Chung-Davidson, Yu-Wen; Neubig, Richard R*; Li, Qian*; Li, Weiming*. “Convergent olfactory trace amine-associated receptors detect biogenic polyamines with distinct motifs via a conserved binding site”. Journal of Biological Chemistry, 2021, 297(5): 101268. 11. Gan, Linhua#; Sun, Jingjing#; Yang, Shuo; Zhang, Xiaocui; Chen, Wu; Sun, Yiyu; Wu, Xiaohua; Cheng, Cheng; Yuan, Jing; Li, Anan; Corbett, Mark A.; Dixon, Mathew P.; Thomas, Tim; Voss, Anne K.; Gecz, Jozef; Wang, Guang-Zhong; Bonni, Azad; Li, Qian*; Huang, Ju*. “Chromatin-binding protein PHF6 regulates activity-dependent transcriptional networks to promote hunger response”. Cell Reports, 2020, 30(11): 3717-3728.e6. 12. Xu, Zhengrong; Li, Qian*. “TAAR agonists”. Cellular and Molecular Neurobiology, 2020, 40(2): 257-272.
(二) 第一/共同第一作者 1. Tan, Longzhi#; Li, Qian#; Xie, X Sunney*. “Olfactory sensory neurons transiently express multiple olfactory receptors during development”. Molecular Systems Biology, 2015, 11(12): 844. (Highlighted in Nature Chemical Biology) 2. Li, Qian; Tachie, Baffour Yaw; Liu, Zhikai; Baldwin, Maude W; Kruse, Andrew C; Liberles, Stephen D*. “Non-classical amine recognition evolved in a large clade of olfactory receptors”. eLife, 2015, 4: e10441. 3. Li, Qian; Liberles, Stephen D*. “Aversion and attraction through olfaction”. Current Biology, 2015, 25(3): 120-129. 4. Li, Qian; Korzan, Wayne J; Ferrero, David M; Chang, Rui B; Roy, Dheeraj S; Buchi, Melanie; Lemon, Jamie K; Kaur, Angeldeep W; Stowers, Lisa; Fendt, Markus; Liberles, Stephen D*. “Synchronous evolution of an odor biosynthesis pathway and behavioral response”. Current Biology, 2013, 23(1): 11-20. (Commented in Current Biology) 5. Li, Qian; Su, Yuan Yuan; Wang, Hao; Li, Lei; Wang, Qiong; Bao, Lan*. “Transmembrane segments prevent surface expression of sodium channel Na(v)1.8 and promote calnexin-dependent channel degradation”. Journal of Biological Chemistry, 2010, 285(43): 32977-32987. 6. Zhang, Zhen Ning#; Li, Qian#; Liu, Chao; Wang, Hai Bo; Wang, Qiong; Bao, Lan*. “The voltage-gated Na(+) channel Na(v)1.8 contains an ER-retention/retrieval signal antagonized by the beta 3 subunit”. Journal of Cell Science, 2008, 121(19): 3243-3252.
(三) 专著 1. Li, Qian; Liberles, Stephen D*. “Odor sensing by trace amine-associated receptors”. Book Chemosensory transduction: the detection of odors, tastes, and other chemostimuli, Chapter 4, 2016. 2. Li, Qian*. “Deorphanization of olfactory trace amine-associated receptors”. Book Olfactory receptors: methods and protocols, Chapter 2, 2018. |