王志斌
王志斌
个人简介

2006年于美国俄亥俄州立大学(OSU)获得博士,2006年至2010年在美国国立卫生研究院(NIH/NHLBI)博士后,后到美国约翰霍普金斯大学任教12年,在公共卫生领域的教育、科研、法规的世界权威,及公共卫生诞生地、“样板学院”彭博公共卫生学院环境健康与工程系,以及医学院癌症系、SidneyKimmel综合癌症中心、表观遗传学中心等任助理教授、副教授。研究成果发表在Cell(4),Nature(2),Science,Nature Genetics,Immunity,Molecular Cell,Genes&Development,PNAs,Genome Biology, Cell Discovery, Jcl insight, Nuclear Acid Research, Epigenetics &Chromatin,Frontiers in Genetics等。总引用次数17600次,4篇引用次数过1000次,单篇最高引用记录7790次。曾荣获美国“Lenfant生命医学学者”、“Kimmel学者”等荣誉称号。

研究领域

T细胞耗竭、癌症免疫治疗的表观遗传组学机制,以及创新性表观药物研发;从衰老、神经退行性疾病的表观遗传组机制,相关表观药物研发,到益寿延年美好愿景;环境因子、遗传多样性、和单亲本DNA甲基化互作致病机理,以及探索“局域性常染色体失活”新假说在发育、疾病中贡献;疾病的多代, 跨代表观遗传机制。

代表论著

1. Huang M, Lou D, Charli A, Kong D, Jin H, Anantharam V, Kanthasamy A, Wang Z†, and Kanthasamy AG†. Mitochondrial dysfunction induces epigenetic dysregulation by H3K27 hyperacetylation to perturb active enhancers in Parkinson’s disease models. JCI insight 2021 Sep 8; 6(17):e138088. doi: 10.1172/jci.insight.138088. PMID: 34494552 PMCID: PMC8492320 († co-correspondence author)

2. Freeman DM, Lou D, Li Y, Martos, SN, and Wang Z. The conserved DNMT1-dependent methylation regions in human cells are vulnerable to neurotoxicant rotenone exposure. Epigenetics and Chromatin 2020 Mar 16; 13(1):17. doi: 10.1186/s13072-020-00338-8 PMID: 32178731 PMC7076959

3. Freeman DM, O’Neal R, Zhang Q, Bouwer E, and Wang Z. Manganese-induced Parkinsonism in mice is reduced using a novel contaminated water sediment exposure model. Environmental Toxicology and Pharmacology 2020 Aug;78:103399. doi: 10.1016/j.etap.2020.103399. PMID: 32380377

4. Wu S, Lei L, Liu M, Song Y, Lu S, Lou D, Shi Y, Wang Z † , and He D†. Mutation of hop-1 and pink-1 attenuates vulnerability of neurotoxicity in C. elegans: the role of mitochondria-associated membrane proteins in Parkinsonism. Experimental Neurology 2018 Nov;309:67-78. doi: 10.1016/j.expneurol.2018.07.018. PMID:30076829 PMCID: PMC6579610

5. Wang T, Pehrsson EC, Purushotham D, Li D, Zhang B, Lawson HA, Province MA, Krapp C, Lan Y, Coarfa C, Katz TA, Tang, WY, Wang Z , Biswal S, Rajagopalan S, Colacino J, Sartor M, Neier K, Dolinoy D, Pinto J, Hamanaka R, Mutlu G, Patisaul HB,Aylor DL, Crawford GE, Chadwick LH, Duncan CG, GartonAE, McAllister KA, (6)TaRGET II Consortium, Bartolomei MS, Walker CL, Tyson FL. The NIEHS TaRGET II Consortium and environmental epigenomes. Nature Biotechnology 2018, 36, 225-227; PMID: 29509741; PMCID: PMC5991835 ; DOI: 10.1038/nbt.4099

科研\学术成果

1.突破教科书中对人体“组蛋白密码”的认知局限 (Nature Genet, 2008;Cell, 2007);

2.纠正教科书中对人体内组蛋白脱乙酰转移酶功能的认知误区 (Cell, 2009);

3.H3K27乙酰化异常可解释因环境污染发病的帕金森病例(占总数的90%) (JCI Insight,2021);

4.父母本上随机出现‘单亲本DNA甲基化’,及相应“局域性常染色体失活”假说提出 (Cell Discov 2017)。