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Annual Review of Genetics|September 9, 2014
Exploring developmental and physiological functions of fatty acid and lipid variants through worm and fly geneticsHuanhu Zhu, Min HanWorm|October 4, 2016
Current advances in the functional studies of fatty acids and fatty acid-derived lipids in C. elegansLu Ying, Huanhu ZhuBMC Biology|February 3, 2026
Dynamic response by commensal E. coli two-component system Cpx contributes to C. elegans developmentHuiyang Xiong, Beilei Hua, Huanhu ZhuGenes & Development|June 26, 2015
Intestinal apical polarity mediates regulation of TORC1 by glucosylceramide in C. elegansHuanhu Zhu, Aileen K Sewell, Min HanDevelopmental Cell|April 21, 2015
A Lipid-TORC1 Pathway Promotes Neuronal Development and Foraging Behavior under Both Fed and Fasted Conditions in C. elegansMarina Kniazeva, Huanhu Zhu, Aileen K Sewell, et al.Elife|May 25, 2013
A novel sphingolipid-TORC1 pathway critically promotes postembryonic development in Caenorhabditis elegansHuanhu Zhu, Huali Shen, Aileen K Sewell, et al.The Journal of Biological Chemistry|April 27, 2010
Disruption of lysosome function promotes tumor growth and metastasis in DrosophilaCongwu Chi, Huanhu Zhu, Min Han, et al.Iscience|January 12, 2019
A Tet/Q Hybrid System for Robust and Versatile Control of Transgene Expression in C. elegansShaoshuai Mao, Yingchuan Qi, Huanhu Zhu, et al.Plos Biology|October 22, 2024
Free long-chain fatty acids trigger early postembryonic development in starved Caenorhabditis elegans by suppressing mTORC1Meiyu Ruan, Fan Xu, Na Li, et al.Nature Communications|August 21, 2021
Saturated very long chain fatty acid configures glycosphingolipid for lysosome homeostasis in long-lived C. elegansFeng Wang, Yuxi Dai, Xufeng Zhu, et al.Pageof 3