报告题目:O-GlcNAc nutrient sensor mediates muscle-fat crosstalk.
报告人: Shi, Hao(时浩)助理教授 弗吉尼亚理工大学
时间:2016年1月5日(周二)上午10点
地点:生科院三楼圆形会议室
Hao Shi简介
姓名: Shi, Hao(时浩)
工作单位:弗吉尼亚理工大学 动物科学系
1993-1996 南京农业大学 动物医学院 动物生理学与生物化学 硕士
2002-2007 Purdue University 动物科学系 肌肉生物学 博士
2007-2010 Yele University 医学院 药理学系 肌肉代谢生物学 博士后
1996-1998 复旦大学医学中心 比较医学系 讲师
1999-2000 复旦大学医学中心 比较医学系 助理教授
2010-2012 Yele University 医学院 药理学系Associate Research Scientist
2013-至今 Virginia Polytechnic Institute and State University 动物科学系 助理教授
发表的代表性论文
1. Shi, H., H.W. Geisler, S. Li, Z. Zhen, E. England, R.F. Helm, J. Wu, X. Yang, and D.E. Gerrard. O-GlcNAc transferase is required for the maintenance of skeletal muscle and systemic metabolic homeostasis. Cell Metabolism 2016; Revised.
2. Shi, H., F. Gatzke, J. M. Molle, H. B. Lee, E. T. Helm, J. J. Oldham, L. Zhang, D. E. Gerrard and A. M. Bennett. Mice lacking MKP-1 and MKP-5 reveal hierarchical regulation of regenerative myogenesis. Journal of Stem Cell and Regenerative Medicine 2015; 1: 1-7.
3. Shi, H., M. Verma, L. Zhang, C. Dong, R.A. Flavell, and A. M. Bennett. Improved regenerative myogenesis and muscular dystrophy in mice lacking Mkp5. The Journal of Clinical Investigation 2013;123:2064-2077.
4. Shi, H., E. Boadu, F. Mercan, L. Zhang, A.M. Le, R.J. Roth Flach, K.J. Tyner, B.B. Olwin, and A.M. Bennett. MAP kinase phosphatase-1 deficiency impairs skeletal muscle regeneration and exacerbates muscular dystrophy. The FASEB J 2010;24:2985-2997.
5. Shi, H., J.M. Scheffler, J.M. Pleitner, C. Zeng, S. Park, K.M. Hannon, A.L. Grant, and D.E. Gerrard. Modulation of skeletal muscle fiber type by mitogen-activated protein kinase signaling. The FASEB Journal 2008;22:2990-3000.
6. Shi, H., J.M. Scheffler, J.M. Pleitner, C. Zeng, S. Park, K.M. Hannon, A.L. Grant, and D.E. Gerrard. Mitogen-activated protein kinase is necessary for the maintenance of skeletal muscle mass. American Journal of physiology Cell Physiology 2009;296: C1040-1048.
7. Shi, H., C. Zeng, A. Ricome, K.M. Hannon, A.L. Grant, and D.E. Gerrard . Extracellular signal-regulated kinase pathway is differentially involved in β-agonist-induced hypertrophy in slow and fast muscles. American Journal of Physiology Cell Physiology 2007;292:C1681-1689.
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