Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Chi W Pak"'
Autor:
Jianjie Mi, Alisa E Shaw, Chi W Pak, Keifer P Walsh, Laurie S Minamide, Barbara W Bernstein, Thomas B Kuhn, James R Bamburg
Publikováno v:
PLoS ONE, Vol 8, Iss 12, p e83609 (2013)
Filament bundles (rods) of cofilin and actin (1:1) form in neurites of stressed neurons where they inhibit synaptic function. Live-cell imaging of rod formation is hampered by the fact that overexpression of a chimera of wild type cofilin with a fluo
Externí odkaz:
https://doaj.org/article/6b6af92becf44f2bb4468f3c52a3554d
Autor:
Ali A. Yunus, Michael K. Rosen, Rustam Ali, David R. Liu, Anuradha Mittal, Alex S. Holehouse, Martyna Kosno, Chi W. Pak, Rohit V. Pappu, Shae B. Padrick
Publikováno v:
Molecular Cell. 63:72-85
Liquid-liquid phase separation, driven by collective interactions among multivalent and intrinsically disordered proteins, is thought to mediate the formation of membrane-less organelles in cells. Using parallel cellular and in vitro assays, we show
Autor:
Chi W. Pak, Diana R. Tomchick, Zhucheng Chen, Ali A. Yunus, Shae B. Padrick, Zhe Chen, Michael K. Rosen, Lisa Henry, Jacob A. Zahm
Publikováno v:
Cell. 155:423-434
Bacterial pathogens use secreted effector proteins to subvert host-cell defenses. VopL is an effector protein from Vibrio parahaemolyticus that nucleates actin filaments. VopL consists of a VopL C-terminal Domain (VCD) and a tandem array of three WAS
Autor:
J. R. Jensen, James R. Bamburg, Alisa E. Shaw, Michael T. Maloney, Ian T. Marsden, Barbara W. Bernstein, Kevin C. Flynn, Claire Goldsbury, Ineka T. Whiteman, O'Neil Wiggan, Laurie S. Minamide, Richard C. Davis, Chi W. Pak
Publikováno v:
Current Alzheimer Research. 7:241-250
Dephosphorylation (activation) of cofilin, an actin binding protein, is stimulated by initiators of neuronal dysfunction and degeneration including oxidative stress, excitotoxic glutamate, ischemia, and soluble forms of beta-amyloid peptide (Abeta).
Autor:
James R. Bamburg, Chi W. Pak
Publikováno v:
The Open Neuroscience Journal. 3:52-153
Publikováno v:
Developmental Neurobiology. 69:761-779
Axonogenesis involves a shift from uniform delivery of materials to all neurites to preferential delivery to the putative axon, supporting its more rapid extension. Waves, growth cone-like structures that propagate down the length of neurites, were s
Publikováno v:
Journal of Theoretical Biology. 252:173-183
Recent observations of F-actin dynamics call for theoretical models to interpret and understand the quantitative data. A number of existing models rely on simplifications and do not take into account F-actin fragmentation and annealing. We use Gilles
Publikováno v:
Nature Reviews Neuroscience. 9:136-147
Higher-order actin-based networks (actin superstructures) are important for growth-cone motility and guidance. Principles for generating, organizing and remodelling actin superstructures have emerged from recent findings in cell-free systems, non-neu
Autor:
Yuxing Liao, Shuoyong Shi, Klaus Brinkmann, Sven Bogdan, Chi W. Pak, Baoyu Chen, Zhucheng Chen, Michael K. Rosen, Lisa Henry, Nick V. Grishin
Publikováno v:
Cell. 156(1-2)
SummaryThe WAVE regulatory complex (WRC) controls actin cytoskeletal dynamics throughout the cell by stimulating the actin-nucleating activity of the Arp2/3 complex at distinct membrane sites. However, the factors that recruit the WRC to specific loc
Autor:
Barbara W. Bernstein, Keifer P. Walsh, Alisa E. Shaw, Chi W. Pak, James R. Bamburg, Jianjie Mi, Thomas Kuhn, Laurie S. Minamide
Publikováno v:
PLoS ONE, Vol 8, Iss 12, p e83609 (2013)
PLoS ONE
PLoS ONE
Filament bundles (rods) of cofilin and actin (1:1) form in neurites of stressed neurons where they inhibit synaptic function. Live-cell imaging of rod formation is hampered by the fact that overexpression of a chimera of wild type cofilin with a fluo