A network of interactions enables CCM3 and STK24 to coordinate UNC13D-driven vesicle exocytosis in neutrophils.
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Yingke Xu | D. Toomre | W. Min | T. Boggon | Yong Zhang | Dianqing Wu | Haifeng Zhang | Wenwen Tang | Jiasheng Zhang | X. Niu | W. Pan | Kun Gao | Weijun Pan
[1] A. Ghabrial,et al. Focal defects in single-celled tubes mutant for Cerebral cavernous malformation 3, GCKIII, or NSF2. , 2013, Developmental cell.
[2] R. Jahn,et al. Molecular machines governing exocytosis of synaptic vesicles , 2012, Nature.
[3] Takayuki Yamashita. Ca2+-dependent regulation of synaptic vesicle endocytosis , 2012, Neuroscience Research.
[4] Joseph M. Esquibel,et al. Munc 13-4 reconstitutes calcium-dependent SNARE-mediated membrane fusion , 2022 .
[5] T. Südhof,et al. Synaptic vesicle exocytosis. , 2011, Cold Spring Harbor perspectives in biology.
[6] H. Gerritsen,et al. The munc13-4-rab27 complex is specifically required for tethering secretory lysosomes at the plasma membrane. , 2011, Blood.
[7] N. Chi,et al. Ccm3 functions in a manner distinct from Ccm1 and Ccm2 in a zebrafish model of CCM vascular disease. , 2011, Developmental biology.
[8] Tadao Shibasaki,et al. Dynamics of insulin secretion and the clinical implications for obesity and diabetes. , 2011, The Journal of clinical investigation.
[9] Yingke Xu,et al. Dual-mode of insulin action controls GLUT4 vesicle exocytosis , 2011, The Journal of cell biology.
[10] J. Voorberg,et al. Functional architecture of Weibel-Palade bodies. , 2011, Blood.
[11] A. Gingras,et al. CCM3/PDCD10 Heterodimerizes with Germinal Center Kinase III (GCKIII) Proteins Using a Mechanism Analogous to CCM3 Homodimerization*♦ , 2011, The Journal of Biological Chemistry.
[12] Brett Larsen,et al. Structure-Function Analysis of Core STRIPAK Proteins , 2011, The Journal of Biological Chemistry.
[13] C. Yuan,et al. Mammalian Ste20-like protein kinase 3 plays a role in hypoxia-induced apoptosis of trophoblast cell line 3A-sub-E. , 2011, The international journal of biochemistry & cell biology.
[14] A. Parekh,et al. Decoding cytosolic Ca2+ oscillations. , 2011, Trends in biochemical sciences.
[15] W. Kiosses,et al. Munc13-4 Restricts Motility of Rab27a-expressing Vesicles to Facilitate Lipopolysaccharide-induced Priming of Exocytosis in Neutrophils* , 2010, The Journal of Biological Chemistry.
[16] P. Kubes,et al. Integrin-induced PIP5K1C kinase polarization regulates neutrophil polarization, directionality, and in vivo infiltration. , 2010, Immunity.
[17] F. Hughson,et al. Munc13-4 is a limiting factor in the pathway required for platelet granule release and hemostasis. , 2010, Blood.
[18] W. Sessa,et al. CCM3 signaling through sterile 20-like kinases plays an essential role during zebrafish cardiovascular development and cerebral cavernous malformations. , 2010, The Journal of clinical investigation.
[19] A. Fischer,et al. Molecular mechanisms of biogenesis and exocytosis of cytotoxic granules , 2010, Nature Reviews Immunology.
[20] Zhiping P Pang,et al. Cell biology of Ca2+-triggered exocytosis. , 2010, Current opinion in cell biology.
[21] Yong Zhang,et al. Different Roles of G Protein Subunits β1 and β2 in Neutrophil Function Revealed by Gene Expression Silencing in Primary Mouse Neutrophils* , 2010, Journal of Biological Chemistry.
[22] T. Force,et al. CCM3/PDCD10 stabilizes GCKIII proteins to promote Golgi assembly and cell orientation , 2010, Journal of Cell Science.
[23] W. Min,et al. Stabilization of VEGFR2 Signaling by Cerebral Cavernous Malformation 3 Is Critical for Vascular Development , 2010, Science Signaling.
[24] C. Albigès-Rizo,et al. Recent insights into cerebral cavernous malformations: a complex jigsaw puzzle under construction , 2010, The FEBS journal.
[25] M. Howe,et al. Mst3b, an Ste20-like kinase, regulates axon regeneration in mature CNS and PNS pathways , 2009, Nature Neuroscience.
[26] Arun T Pores-Fernando,et al. Calcium influx and signaling in cytotoxic T‐lymphocyte lytic granule exocytosis , 2009, Immunological reviews.
[27] Wei Guo,et al. The exocyst complex in polarized exocytosis. , 2004, International review of cytology.
[28] U. Felbor,et al. Functional analyses of human and zebrafish 18–amino acid in‐frame deletion pave the way for domain mapping of the cerebral cavernous malformation 3 protein , 2009, Human mutation.
[29] Rakesh Nagarajan,et al. High throughput digital quantification of mRNA abundance in primary human acute myeloid leukemia samples. , 2009, The Journal of clinical investigation.
[30] Bryanne E. Robson,et al. Targeted deletion of tumor suppressor PTEN augments neutrophil function and enhances host defense in neutropenia-associated pneumonia. , 2009, Blood.
[31] I. Chaudry,et al. Mechanism of the Salutary Effects of Estrogen on Kupffer Cell Phagocytic Capacity following Trauma-Hemorrhage: Pivotal Role of Akt Activation1 , 2009, The Journal of Immunology.
[32] Gavin Thurston,et al. Control of vascular morphogenesis and homeostasis through the angiopoietin–Tie system , 2009, Nature Reviews Molecular Cell Biology.
[33] B. Beutler,et al. The Rab27a Effectors JFC1/Slp1 and Munc13‐4 Regulate Exocytosis of Neutrophil Granules , 2008, Traffic.
[34] F. Mollinedo,et al. Rab27a Regulates Exocytosis of Tertiary and Specific Granules in Human Neutrophils1 , 2008, The Journal of Immunology.
[35] F. Varoqueaux,et al. Munc13-4 Regulates Granule Secretion in Human Neutrophils1 , 2008, The Journal of Immunology.
[36] Paige Lacy,et al. Control of granule exocytosis in neutrophils. , 2008, Frontiers in bioscience : a journal and virtual library.
[37] J. Miyoshi,et al. Doc2α and Munc13-4 Regulate Ca2+-Dependent Secretory Lysosome Exocytosis in Mast Cells1 , 2008, The Journal of Immunology.
[38] C. Yuan,et al. Mammalian Ste20-like protein kinase 3 mediates trophoblast apoptosis in spontaneous delivery , 2008, Apoptosis.
[39] S. Sugita,et al. Mechanisms of exocytosis , 2007, Acta physiologica.
[40] B. Beutler,et al. Jinx, an MCMV susceptibility phenotype caused by disruption of Unc13d: a mouse model of type 3 familial hemophagocytic lymphohistiocytosis , 2007, The Journal of Experimental Medicine.
[41] B. Beutler,et al. Rab27a is a key component of the secretory machinery of azurophilic granules in granulocytes. , 2007, The Biochemical journal.
[42] A. Fischer,et al. Secretory cytotoxic granule maturation and exocytosis require the effector protein hMunc13-4 , 2007, Nature Immunology.
[43] Chih‐Chung Lin,et al. TNF-α induces MMP-9 expression via activation of Src/EGFR, PDGFR/PI3K/Akt cascade and promotion of NF-κB/p300 binding in human tracheal smooth muscle cells , 2007 .
[44] Chi-Ying F. Huang,et al. Inhibition of Cell Migration by Autophosphorylated Mammalian Sterile 20-Like Kinase 3 (MST3) Involves Paxillin and Protein-tyrosine Phosphatase-PEST* , 2006, Journal of Biological Chemistry.
[45] L. Benowitz,et al. Mst3b, a purine-sensitive Ste20-like protein kinase, regulates axon outgrowth , 2006, Proceedings of the National Academy of Sciences.
[46] Caiying Guo,et al. P-Rex1 Is a Primary Rac2 Guanine Nucleotide Exchange Factor in Mouse Neutrophils , 2005, Current Biology.
[47] S. L. Wong,et al. Towards a proteome-scale map of the human protein–protein interaction network , 2005, Nature.
[48] A. Heck,et al. Munc13-4 is an effector of rab27a and controls secretion of lysosomes in hematopoietic cells. , 2004, Molecular biology of the cell.
[49] A. Fischer,et al. Munc13-4 Is Essential for Cytolytic Granules Fusion and Is Mutated in a Form of Familial Hemophagocytic Lymphohistiocytosis (FHL3) , 2003, Cell.
[50] L. Chin,et al. The molecular machinery of synaptic vesicle exocytosis , 2003, Cellular and Molecular Life Sciences CMLS.
[51] Chi-Ying F. Huang,et al. Caspase Activation of Mammalian Sterile 20-like Kinase 3 (Mst3) , 2002, The Journal of Biological Chemistry.
[52] S. Grinstein,et al. In Situ Measurements of the pH of Mammalian Peroxisomes Using the Fluorescent Protein pHluorin* , 2001, The Journal of Biological Chemistry.
[53] T. A. Ryan,et al. Calcium accelerates endocytosis of vSNAREs at hippocampal synapses , 2001, Nature Neuroscience.
[54] K. Hofmann,et al. Definition of Munc13-homology-domains and characterization of a novel ubiquitously expressed Munc13 isoform. , 2000, The Biochemical journal.
[55] M. Heinzelmann,et al. Neutrophils and renal failure. , 1999, American journal of kidney diseases : the official journal of the National Kidney Foundation.
[56] Gero Miesenböck,et al. Visualizing secretion and synaptic transmission with pH-sensitive green fluorescent proteins , 1998, Nature.
[57] J. Blenis,et al. Cloning and Characterization of a Human STE20-like Protein Kinase with Unusual Cofactor Requirements* , 1997, The Journal of Biological Chemistry.
[58] E. C. Smith,et al. Requirements for the catalytic cycle of the N-ethylmaleimide-Sensitive Factor (NSF). , 2012, Biochimica et biophysica acta.
[59] M. Preul,et al. Cerebral cavernous malformations : from genes to proteins to disease Clinical article , 2011 .
[60] J. Miyoshi,et al. Doc2 alpha and Munc13-4 regulate Ca(2+) -dependent secretory lysosome exocytosis in mast cells. , 2008, Journal of immunology.
[61] Chih‐Chung Lin,et al. TNF-alpha induces MMP-9 expression via activation of Src/EGFR, PDGFR/PI3K/Akt cascade and promotion of NF-kappaB/p300 binding in human tracheal smooth muscle cells. , 2007, American journal of physiology. Lung cellular and molecular physiology.
[62] J. Kyriakis,et al. The GCK II and III subfamilies of the STE20 group kinases. , 2007, Frontiers in bioscience : a journal and virtual library.
[63] Mitsunori Fukuda,et al. Versatile role of Rab27 in membrane trafficking: focus on the Rab27 effector families. , 2005, Journal of biochemistry.
[64] G. Dunn,et al. Analyzing chemotaxis using the Dunn direct-viewing chamber. , 1997, Methods in molecular biology.