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Ciliary PI(4,5)P2 dictates fall of primary cilia and rise of cell cycle

Mar.31,2017
Research Seminar
Title: Ciliary PI(4,5)P2 dictates fall of primary cilia and rise of cell cycle
Speaker: Takanari Inoue,Ph.D.
Professor
Department of Cell Biology
Johns Hopkins University School of Medicine
Time: 13:00-14:30, Apr. 28, 2017
Location: Youcai Deng Hall,School of Life Sciences(太阳成集团tyc7111cc邓祐才报告厅)
Host:ZHU, Alan Jian
Abstract:
A primary cilium is presented as a meso-scale device that senses and translates extracellular information into intracellular biochemical reactions. These input cues manifest in a variety of forms ranging from chemical to mechanical ones. Deregulation of these information transfer leads to human diseases known as ciliopathies. Due to its diffraction-limited dimension and semi-membrane-bound topology, a primary cilium has been a daunting compartment to visualize and manipulate signaling events on site. To overcome this challenge, we combine a chemically inducible dimerization technique with specific organelle targeting to achieve rapidly inducible manipulation of signal transduction exclusively inside primary cilia. We will discuss our recent published as well as unpublished works on roles of actin, tubulins and phosphoinositides in stability of primary cilia.
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