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Baoli Yang

Cells

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Full-Text Articles in Obstetrics and Gynecology

The Ubiquitin Ligase Adaptor Ndfip1 Regulates T Cell-Mediated Gastrointestinal Inflammation And Inflammatory Bowel Disease Susceptibility., H. Ramon, C. Riling, J. Bradfield, Baoli Yang, H. Hakonarson, P. Oliver Jul 2013

The Ubiquitin Ligase Adaptor Ndfip1 Regulates T Cell-Mediated Gastrointestinal Inflammation And Inflammatory Bowel Disease Susceptibility., H. Ramon, C. Riling, J. Bradfield, Baoli Yang, H. Hakonarson, P. Oliver

Baoli Yang

Nedd4 family interacting protein 1 (Ndfip1) is an adaptor protein that regulates Itch, an E3 ubiquitin ligase that ubiquitylates JunB, thereby preventing interleukin (IL)-4 and IL-5 production. Mice lacking Ndfip1 or Itch develop T helper type 2 (T(H)2)-mediated inflammation in the skin and lungs and die prematurely. In this study we show that Ndfip1-/- mice also develop inflammation in the gastrointestinal tract. Inflammation is characterized by infiltration of eosinophils and T cells and is accompanied by a failure to gain weight. T cells are both necessary and sufficient for eosinophil recruitment and inflammation. This is because Ndfip1-/- T cells become …


The Mammalian Sodium Channel Bnc1 Is Required For Normal Touch Sensation., M. Price, G. Lewin, S. Mcilwrath, C. Cheng, J. Xie, P. Heppenstall, C. Stucky, A. Mannsfeldt, T. Brennan, H. Drummond, J Qiao, C. Benson, D Tarr, R Hrstka, Baoli Yang, R. Williamson, M. Welsh Jul 2013

The Mammalian Sodium Channel Bnc1 Is Required For Normal Touch Sensation., M. Price, G. Lewin, S. Mcilwrath, C. Cheng, J. Xie, P. Heppenstall, C. Stucky, A. Mannsfeldt, T. Brennan, H. Drummond, J Qiao, C. Benson, D Tarr, R Hrstka, Baoli Yang, R. Williamson, M. Welsh

Baoli Yang

Of the vertebrate senses, touch is the least understood at the molecular level The ion channels that form the core of the mechanosensory complex and confer touch sensitivity remain unknown. However, the similarity of the brain sodium channel 1 (BNC1) to nematode proteins involved in mechanotransduction indicated that it might be a part of such a mechanosensor. Here we show that disrupting the mouse BNC1 gene markedly reduces the sensitivity of a specific component of mechanosensation: low-threshold rapidly adapting mechanoreceptors. In rodent hairy skin these mechanoreceptors are excited by hair movement. Consistent with this function, we found BNC1 in the …