A Rho-based reaction-diffusion system governs cell wall patterning in metaxylem vessels
暂无分享,去创建一个
[1] H. Fukuda,et al. CORTICAL MICROTUBULE DISORDERING1 Is Required for Secondary Cell Wall Patterning in Xylem Vessels , 2017, Plant Cell.
[2] M. Balasubramanian,et al. Cell Polarity in Yeast. , 2017, Annual review of cell and developmental biology.
[3] H. Fukuda,et al. A Novel Plasma Membrane-Anchored Protein Regulates Xylem Cell-Wall Deposition through Microtubule-Dependent Lateral Inhibition of Rho GTPase Domains , 2017, Current Biology.
[4] A. Ridley,et al. Regulating Rho GTPases and their regulators , 2016, Nature Reviews Molecular Cell Biology.
[5] Timothy C Elston,et al. Role of competition between polarity sites in establishing a unique front , 2015, eLife.
[6] G. von Dassow,et al. Activator-inhibitor coupling between Rho signaling and actin assembly make the cell cortex an excitable medium , 2015, Nature Cell Biology.
[7] H. Fukuda,et al. Novel coiled-coil proteins regulate exocyst association with cortical microtubules in xylem cells via the conserved oligomeric golgi-complex 2 protein. , 2015, Plant & cell physiology.
[8] Jeremy B. A. Green,et al. Modelling from the experimental developmental biologists viewpoint. , 2014, Seminars in cell & developmental biology.
[9] J Raspopovic,et al. Digit patterning is controlled by a Bmp-Sox9-Wnt Turing network modulated by morphogen gradients , 2014, Science.
[10] Sha Li,et al. Arabidopsis RopGEF4 and RopGEF10 are important for FERONIA-mediated developmental but not environmental regulation of root hair growth. , 2013, The New phytologist.
[11] H. Fukuda,et al. Rho of Plant GTPase Signaling Regulates the Behavior of Arabidopsis Kinesin-13A to Establish Secondary Cell Wall Patterns[W] , 2013, Plant Cell.
[12] D. Lew,et al. Beyond symmetry-breaking: competition and negative feedback in GTPase regulation. , 2013, Trends in cell biology.
[13] Hong Ma,et al. AtPRK2 promotes ROP1 activation via RopGEFs in the control of polarized pollen tube growth. , 2013, Molecular plant.
[14] L. Edelstein-Keshet,et al. Pattern formation of Rho GTPases in single cell wound healing , 2013, Molecular biology of the cell.
[15] Zhenbiao Yang,et al. Spatial control of plasma membrane domains: ROP GTPase-based symmetry breaking. , 2012, Current opinion in plant biology.
[16] Hiroo Fukuda,et al. Initiation of Cell Wall Pattern by a Rho- and Microtubule-Driven Symmetry Breaking , 2012, Science.
[17] S. Botchway,et al. Cell wall constrains lateral diffusion of plant plasma-membrane proteins , 2012, Proceedings of the National Academy of Sciences.
[18] Paul T. Sharpe,et al. Periodic stripe formation by a Turing-mechanism operating at growth zones in the mammalian palate , 2012, Nature Genetics.
[19] A. Wittinghofer,et al. Dimeric plant RhoGAPs are regulated by its CRIB effector motif to stimulate a sequential GTP hydrolysis. , 2011, Journal of molecular biology.
[20] K. Okada,et al. Reaction-Diffusion Pattern in Shoot Apical Meristem of Plants , 2011, PloS one.
[21] A. Cheung,et al. FERONIA receptor-like kinase regulates RHO GTPase signaling of root hair development , 2010, Proceedings of the National Academy of Sciences.
[22] H. Fukuda,et al. Wood Cell-Wall Structure Requires Local 2D-Microtubule Disassembly by a Novel Plasma Membrane-Anchored Protein , 2010, Current Biology.
[23] Zhenbiao Yang,et al. Pollen-tube tip growth requires a balance of lateral propagation and global inhibition of Rho-family GTPase activity , 2010, Journal of Cell Science.
[24] Shigeru Kondo,et al. Interactions between zebrafish pigment cells responsible for the generation of Turing patterns , 2009, Proceedings of the National Academy of Sciences.
[25] Daniel J. Lew,et al. Symmetry-Breaking Polarization Driven by a Cdc42p GEF-PAK Complex , 2008, Current Biology.
[26] Andrew B Goryachev,et al. Dynamics of Cdc42 network embodies a Turing‐type mechanism of yeast cell polarity , 2008, FEBS letters.
[27] Yan Zhang,et al. A distinct mechanism regulating a pollen-specific guanine nucleotide exchange factor for the small GTPase Rop in Arabidopsis thaliana , 2007, Proceedings of the National Academy of Sciences.
[28] Daniel L. Mace,et al. A High-Resolution Root Spatiotemporal Map Reveals Dominant Expression Patterns , 2007, Science.
[29] A. Wittinghofer,et al. Structural evidence for a common intermediate in small G protein-GEF reactions. , 2007, Molecular cell.
[30] H. Hamada,et al. The left-right axis in the mouse: from origin to morphology , 2006, Development.
[31] Zhenbiao Yang,et al. Members of a Novel Class of Arabidopsis Rho Guanine Nucleotide Exchange Factors Control Rho GTPase-Dependent Polar Growth[W] , 2006, The Plant Cell Online.
[32] A. Wittinghofer,et al. A new family of RhoGEFs activates the Rop molecular switch in plants , 2005, Nature.
[33] B. Shuai,et al. Kinase partner protein interacts with the LePRK1 and LePRK2 receptor kinases and plays a role in polarized pollen tube growth. , 2005, The Plant journal : for cell and molecular biology.
[34] S. Turner,et al. Control of Cellulose Synthase Complex Localization in Developing Xylem Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.012815. , 2003, The Plant Cell Online.
[35] Zhenbiao Yang,et al. Arabidopsis RopGAPs are a novel family of rho GTPase-activating proteins that require the Cdc42/Rac-interactive binding motif for rop-specific GTPase stimulation. , 2000, Plant physiology.
[36] Harry L. Swinney,et al. Dependence of Turing pattern wavelength on diffusion rate , 1995 .
[37] John S. Maybee,et al. Matrices, digraphs, and determinants , 1989 .
[38] H. Meinhardt,et al. A theory of biological pattern formation , 1972, Kybernetik.
[39] A. M. Turing,et al. The chemical basis of morphogenesis , 1952, Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences.
[40] H. Weinberger,et al. Mathematical Biology , 2002 .