博士💗👨🏻🏭,沐鸣2副教授🙍🏿✉️。2005年中國科沐鸣2上海生命科學研究院取得博士學位👩。先後在中國科沐鸣2上海生命科學研究院、美國貝勒醫沐鸣2(Baylor College of Medicine)生物化學與分子生物學系作博士後研究。2011年入選上海市浦江人才計劃。主要從事藥物(化學)遺傳及細胞脂質代謝分子調控機製研究🧑🏻。在藥用化合物作用機製、耐藥性和功能基因遺傳網絡機製研究方面取的一系列研究成果,在Nat. Methods, PLOS Genet.🤹🏿♂️,Cell Rep.👷,Mol. Cell.等學術刊物上發表論文100余篇,主持相關科研項目20余項。是中國生物化學與分子生物學會、中國細胞生物學學會🧑🏼🔧、上海市生物化學與分子生物學學會會員🎀,中國科沐鸣2西北高原生物研究所客座研究員。曾邀為Int. J. Mol. Sci.,Front. Microbiol.🛌🏽🔊,Toxicol. Res.,FEBS Lett.🏬,PLOS One🈷️,Exp. Ther. Med.等期刊審稿。
主要研究方向🤷🏻♀️:
1.真菌耐藥性分子機製及新治療策略研究🕎:臨床化療、導管、插管和器官移植等引起的條件性真菌感染增多🏌🏿,真菌耐藥性問題日益嚴重🧑🏿🏭,本方向目的是研究真菌的耐藥機製並尋找新型抗真菌藥物或新的治療措施;
2. 脂肪積累調控的生理與分子機製研究🛜:肥胖相關的脂代謝障礙引起脂肪肝🐕👵🏻、糖尿病、心臟衰竭等代謝綜合症,嚴重危害公眾的健康。通過建立“肥胖”細胞模型,研究脂肪積累調控的分子機製尋找有效的幹預措施(減肥藥物)及機製👍🏿;
3.熱點小分子藥物的分子靶點鑒定及細胞調控機製研究👩🏿🦲:藥用小分子化合物的分子靶點是藥物產生藥效(包括副作用)的基礎🎒,一些化合物如鬼臼毒素、氯碘喹啉等有明確的抑製腫瘤、緩解關節炎的臨床治療作用🤷🏽♂️,但也有機製不明的嚴重副作用,本方向目的是研究一些熱點藥物的分子靶點明確作用機製🛳,提出副作用消除策略👨👩👧👦🤹🏽。
申請專利
1) 一種TAG代謝障礙型肥胖酵母模型的構建方法💑,專利號: ZL201310016430.8
2) 一種檢測活體酵母細胞UPR水平的雙熒光素酶監測質粒及其構建和應用,專利號: ZL 201410333939.X
3) 一種抗腫瘤活性化合物鬼臼毒素PPT的前藥及其製備方法,公開號:
4) 一種釀酒酵母等位基因高效整合質粒系統及其應用,公開號📏:105602983A
5) 一種基於毛細管電泳的細胞內的5-氟胞嘧啶和5-氟尿嘧啶的檢測方法🧏🏽,M Li, P Zhu, Z Huang*, Y Huang, X Lv, Q Zheng, Z Zhu, Z Fan, Y Yang*, P Shi*. Aspirin damages the cell wall of Saccharomyces cerevisiae by inhibiting the expression and activity of dolichol-phosphate mannose synthase. FEBS Lett. 2022, 596(3):369-380.
2) Z Huang*, H Dai, X Zhang, Q Wang, J Sun, Y Deng, P Shi. BSC2 induces multidrug resistance via contributing to the formation of biofilm in Saccharomyces cerevisiae. Cell. Microbiol. 2021 Sep 5:e13391.https://doi.org/10.1111/cmi.13391
3) Y Kong, Q Wang, F Cao, X Zhang, Z Fang, P Shi, H Wang, Y Shen & Z Huang*. BSC2 enhances cell resistance to AmB by inhibiting oxidative damage in Saccharomyces cerevisiae, Free Radical Res., 2020, 54(4): 231-243🫅🏿,
4) X Zhang, X Kuang, F Cao, R Chen, Z Fang, W Liu*, P Shi, H Wang, Y Shen, Z Huang*. Effect of cadmium on mRNA mistranslation in Saccharomyces cerevisiae. J Basic Microbiol. 2020, 60(4): 372-379
5) R Chen, Q Zhu, Z Fang, Z Huang*, J Sun, M Peng, P Shi. Aluminum induces oxidative damage in Saccharomyces cerevisia. Can J Microbiol., 2020, 66(12): 713-722.
6) Z Huang*, Y Yu, Z Fang, Y Deng, Y Shen and P Shi. OLE1 reduces cadmium-induced oxidative damage in Saccharomyces cerevisiae. FEMS Microbiol. Lett., 2018, 365, doi: 10.1093/femsle/fny193
7) Q Wang, X Du, K Ma, P Shi, W Liu, J Sun, M Peng, Z Huang*. A critical role for very long-chain fatty acid elongases in oleic acid-mediated Saccharomyces cerevisiae cytotoxicity. Microbiol. Res., 2018, 201: 1-7.
8) Z Yang, Q Wang, K Ma, P Shi, W Liu, Z Huang*. Fluconazole inhibits the cellular ergosterol synthesis to confer synergism to berberine against yeast cells. J. Glob. Antimicrob. Resist., 2018, 13: 125-130.
Z Fang, Z Chen, S Wang, P ShiY Shen, Y Zhang, J Xiao and Z HuangHuang, Z Fang , H Zhen , L Zhou, HM Amin , P Shi. Inhibition of type I insulin-like growth factor receptor tyrosine kinase by picropodophyllin induces apoptosis and cell cycle arrest in T lymphoblastic leukemia/lymphoma. 3(2): 577-585.
20) Z Huang, S. Srinivasan, JH Zhang, KF Chen,YX Li, W Li, FA Quiocho, and X Pan. Discovering thiamine transporters as targets of chloroquine using a novel functional genomics strategy. PLoS Genet., 2012,8(11): e1003083. doi:10.1371.
21) Z Huang, K Chen, T Xu, J Zhang, Y Li, W Li, A Agarwal, A Clark, J Phillips, and X Pan. Sampangine inhibits heme biosynthesis in both yeast and human. Eukaryot. cell, 2011,10(11):1536-44.
22) X Pan, S Reissman, NR Douglas, Z Huang, DS Yuan, X Wang, JM McCaffery, J Frydman and JD Boeke. Trivalent Arsenic Inhibits the Functions of Chaperonin Complex. Genetics,2010, 186(2):725-34.
23) Z Huang, G Chen, P Shi. Effects of emodin on the gene expression profiling of human breast carcinoma cells. Cancer Detect. Pre.,2009, 32: 286-291.
24) J Zhang, X Shi , Y Li , BJ Kim , J Jia , Z Huang , T Yang , X Fu , SY Jung , Y Wang , P Zhang , ST Kim, X Pan, J Qin. Acetylation of Smc3 by Eco1 is required for S phase sister chromatid cohesion in both human and yeast.Mol. Cell.,2008, 11;31(1):143-51.
25) Z Huang, RS Sucgang, Y Lin, X Shi, JD Boeke & X Pan. Plasmid-chromosome shuffling for non-deletion alleles in yeast. Nat. Methods., 2008 Feb;5(2):167-9.
歡迎對本方向感興趣的同學加入🐻!
歡迎相關企業就發酵優化、微生物檢測、新藥研發進行合作!
聯系電話🏕:021-67792911EMAIL🫄🏽📠:zhiweih@dhu.edu.cn
實驗室🤛🏼:4號沐鸣2樓3093室