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姓名: 黄俊祺 部门: 生命科学技术学院 性别: 男 职务: 职称: 副研究员(自然科学) 学位: 博士 毕业院校: 新加坡国立大学 联系电话: 电子邮箱: huangjunqi@jnu.edu.cn 办公地址: 暨南大学第二理工楼945实验室 通讯地址: 邮编: 510632 传真: 荣誉奖励: |
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个人简介黄俊祺,博士,研究生导师。广东省“珠江人才计划”第七批引进创新创业团队成员 中山大学生物科学学士(优秀本科毕业生、国奖)、新加坡国立大学生物科学博士(全奖),曾在新加坡淡马锡生命科学研究所、新加坡国立大学机械生物学研究所,及英国华威大学医学院从事科研工作。主要研究方向为细胞程序性死亡、裂殖酵母、肌动蛋白细胞骨架。在 Advanced Science、Journal of Cell Biology、eLife、The Innovation Life、Cell Investigation 等期刊发表多项研究成果,授权多项国家发明专利。在人才培养方面,已指导17名硕士研究生、5名本科生及2名联合培养硕博研究生顺利毕业。其中,部分毕业生赴国内外知名高校及科研机构继续深造或开展科研工作,包括北京大学、中山大学、南方医科大学、新加坡国立大学、美国Scripps研究所、德国马克斯·普朗克分子生物医学研究所、德国罗伯特·博世肿瘤疾病中心及美国得克萨斯大学达拉斯分校等。 学习经历于中山大学生命科学学院生物科学专业完成本科阶段学习,2009年获理学学士学位。随后赴新加坡国立大学生物科学系攻读博士学位,师从Mohan K. Balasubramanian教授,于2014年获博士学位。博士期间主要以裂殖酵母为模式生物,围绕肌动蛋白细胞骨架、细胞分裂、突变体筛选、活细胞显微成像等方向开展研究,接受了系统的裂殖酵母、细胞生物学、分子遗传学与显微成像训练。 工作经历2013-2014年任新加坡国立大学机械生物学研究所(Mechanobiology Institute)研究助理,主要开展细胞分裂、肌动蛋白细胞骨架及力学生物学研究。 2014-2017年在英国华威大学医学院从事博士后研究,重点研究裂殖酵母属(Schizosaccharomyces pombe、Schizosaccharomyces japonicus)细胞分裂环收缩及分解机制。 2017年加入暨南大学,现任生命科学技术学院副研究员,围绕细胞程序性死亡、细胞骨架、及裂殖酵母开展研究,并承担课程教学、研究生培养及科研平台建设等工作。 研究方向细胞程序性死亡;肌动蛋白细胞骨架;裂殖酵母 主要论文(1) Huang J*, Huang Y*, Yu H, Subramanian D, Padmanabhan A, Thadani R, Tao Y, Tang X, Wedlich-Soldner R, Balasubramanian MK. 2012. Nonmedially assembled F-actin cables incorporate into the actomyosin ring in fission yeast. Journal of Cell Biology. 199(5): 831-47. DOI: 10.1083/jcb.201209044 (* 共一; Highlighted by JCB; Faculty of 1000 推荐阅读) (2) Huang J*†, Chew TG*†, Gu Y, Palani S, Kamnev A, Martin DS, Carter NJ, Cross RA, Oliferenko S, Balasubramanian MK†. 2016. Curvature-induced expulsion of actomyosin bundles during cytokinetic ring contraction. eLife. DOI: 10.7554/eLife.21383 († 共通讯; *共一;) (3) Chew TG*†, Huang J*†, Palani S, Sommese R, Kamnev A, Gu Y, Oliferenko S, Sivaramakrishnan S, Balasubramanian MK†. 2017. Actin turnover maintains actin filament homeostasis during cytokinetic ring contraction. Journal of Cell Biology. DOI: 10.1083/jcb.201701104 (†共通讯; * 共一) (4) Tang X, Huang J, Padmanabhan A, Bakka K, Bao Y, Tan BY, Cande WZ, Balasubramanian MK. 2011. Marker reconstitution mutagenesis: a simple and efficient reverse genetic approach. Yeast. 28(3): 205-12. DOI: 10.1002/yea.1831 (5) Subramanian D*, Huang J*, Sevugan M, Robinson RC, Balasubramanian MK, Tang X. 2013. Insight into Actin Organization and Function in Cytokinesis from Analysis of Fission Yeast Mutants. Genetics. 194: 435-446. DOI: 10.1534/genetics.113.149716 (* 共一) (6) Mishra M, Huang J, Balasubramanian MK. 2014. The yeast actin cytoskeleton. FEMS Microbiology Reviews. 38(2): 213-27. DOI: 10.1111/1574-6976.12064 (7) He R, Wang Z, Lu Y, Huang J, Ren J, Wang K. 2015. Chaperonin containing T-complex polypeptide subunit eta is a potential marker of joint contracture: an experimental study in the rat. Cell Stress Chaperones. 20(6): 959-66. DOI: 10.1007/s12192-015-0624-x (8) Wang S, Thiyagarajan S, Chew TG, Huang J, Palani S, Kamnev A, Gu Y, Oliferenko S, Balasubramanian MK, O’Shaughnessy B. 2017. Component turnover in the cytokinetic ring maintains organizational homeostasis and tension production. Biophysical Journal. DOI: 10.1016/j.bpj.2016.11.2303 (9) He R, Lu Y, Ren J, Wang Z, Huang J, Zhu L, Wang K. 2017. Decreased fibrous encapsulation and enhanced osseointegration in vitro by decorin-modified titanium surface. Colloids and Surfaces B: Biointerfaces. 155: 17-24. DOI: 10.1016/j.colsurfb.2017.03.055 (10) Chew T, Lim T, Osaki Y,Huang J, Kamnev A, Hatano T, Osumi M, Balasubramanian MK. 2020. Inhibition of cell membrane ingression at the division site by cell wall in fission yeast. Molecular Biology of the Cell. DOI: 10.1091/mbc.E20-04-0245 (11) Fan Z, Tian Y, Chen Z, Liu L, Zhou Q, He J, Coleman J, Dong C, Li N, Huang J, Xu C, Zhang Z, Gao S, Zhou P, Ding K, Chen L†. 2020. Blocking interaction between SHP2 and PD-1 denotes a novel opportunity for developing PD-1 inhibitors. EMBO Molecular Medicine. DOI: 10.15252/emmm.201911571 (12) Ren W*, Zhao W*, Cao L†, Huang J†. 2021. Involvement of the Actin Machinery in Programmed Cell Death. Frontiers in Cell and Developmental Biology. DOI: 10.3389/fcell.2020.634849 († 共通讯) (13) Liu Y, Tu C, Guo X, Wu C, Gu C, Lai Q, Fang Y, Huang J, Wang Z, Li A, Liu S†. 2021. Tumor-suppressive Function of EZH2 Is through Inhibiting Glutaminase. Cell Death & Disease. DOI: 10.1038/s41419-021-04212-7 (14) Huang J*, Wu R*, Chen L, Yang Z, Yan D†, Li M†. 2022. Understanding Anthracycline Cardiotoxicity from Mitochondrial Aspect. Frontiers in Pharmacology. DOI: 10.3389/fphar.2022.811406 (* 共一, Web of Science 高被引文章) (15) Thiyagarajan S, Wang S, Chew TG, Huang J, Balasubramanian MK, O’Shaughnessy B†. 2022. Myosin turnover controls actomyosin contractile instability. Proceedings of the National Academy of Sciences of the United States of America(PNAS). DOI: 10.1073/pnas.2211431119 (16) Zhu S*, Hou J*, Liu C*, Liu P, Guo T, Lin Z, Wang X, Wu C, Huang D, Huang J, Wang Z†, He R†. 2022.An engineered tenogenic patch for the treatment of rotator cuff tear. Materials & Design. DOI: 10.1016/j.matdes.2022.111402 (17) Hou J*, Zhu S*, Li Y, Chen X, Dai Z, Qiao M, Fan S,Huang J†, He R†. 2025. Activation of the NRF2/SLC7A11/GPX4 Axis Mitigates Arthrofibrosis by Suppressing Myofibroblast Ferroptosis through Oxidative Stress Regulation. Cell Investigation. DOI: 10.1016/j.clnves.2025.100020 († 共通讯) (18) Qiao M*, Fang Y*, Huang J†. 2025. Triaptosis: Pro-oxidant-induced programmed cell death. The Innovation Life. DOI: 10.59717/j.xinn-life.2025.100126 († 通讯) (19) Qiao M*, Yuan Z*, Huang JW, Fang Y, Li Y†, Guo Y†, Huang J†. 2025. pH-Regulated Nuclear F-Actin Assembly during Ferroptosis. Frontiers in Cell and Developmental Biology. DOI: 10.3389/fcell.2025.1699698 († 共通讯) (20) Huang JW, Xie Y†, Xiang F†, Huang J†. 2026. Editorial: Ferroptosis, cuproptosis, and triaptosis: unveiling pathways and translational prospects. Frontiers in Cell and Developmental Biology. DOI: 10.3389/fcell.2026.1778698 († 共通讯) (21) Qiao M*, Zhou L*, Zhou M, Fang Y, Mai H, Cao L, Xu K, Sang Y, Chen M, Huang JW, Huang P, Yan Z, Wang C, Dai Z, Huang D, He R, Pang L†, Guo Y†, Chew T†,Huang J†. 2026. ERM Inhibition Confers Ferroptosis Resistance through ROS-Induced NRF2 Signaling. Advanced Science. DOI: 10.1002/advs.202513310 († 共通讯;被杂志选为当期背封面) 主要著作(1) Huang J*, Mishra M*, Palani S, Chew TG, Balasubramanian MK. 2016. Isolation of cytokinetic actomyosin rings from Saccharomyces cerevisiae and Schizosaccharomyces pombe. Methods in Molecular Biology. Springer Nature出版社. 1369: 125-36. DOI: 10.1007/978-1-4939-3145-3_10 (* 共一) (2) Huang D*, Lin R*, Liu S, Zhong H, Dai Z, Huang J†. 2022. Migrasome in cell movement: new horizon for cell signaling. Chapter of “Cell Movement in Health and Disease”. Elsevier爱思唯尔出版社. DOI: 10.1016/b978-0-323-90195-6.00006-1 († 通讯) (3) Zhao W*, Ren W*, Huang D, Sang Y, Cao L, Huang J†. 2022. Cell Structure and Physiology. First chapter of “Cell Movement in Health and Disease”. Elsevier爱思唯尔出版社. DOI: 10.1016/B978-0-323-90195-6.00007-3 († 通讯) (4) Dai Z*, Zhang W*, Zhou L, Huang J†. 2023. Probing lipid peroxidation in ferroptosis: emphasizing the utilization of C11-BODIPY-based protocols. Methods in Molecular Biology. Springer Nature出版社. DOI: 10.1007/978-1-0716-3433-2_6 († 通讯) 承担课题2021年,广州市基础与应用基础研究项目,主持 2018年,广东省“珠江人才计划”引进创新创业团队项目,核心成员 2017年,国家重点研发计划“战略性国际科技创新合作”重点专项, 参与 2017年,国家自然科学基金青年基金项目, 主持 发明专利ZL202310489614.X、ZL202310062933.2、 ZL202311009172.0、ZL201921931845.7 讲授课程分子遗传学方法、医学生物学 荣誉奖励社会职务Cell Investigation 杂志第一届编委。中国健康促进基金会衰老干预与慢病防治专家委员会委员。暨南大学欧美同学会(留学人员联谊会)第二届理事会理事。新加坡国立大学深圳校友会创会成员兼首届副会长。(新加坡)中山大学校友会筹备委员会委员。担任 Advanced Science、Protein & Cell、Acta Pharmaceutica Sinica B、iScence 等学术期刊审稿人。 |