SNX18 is an SNX9 paralog that acts as a membrane tubulator in AP-1-positive endosomal trafficking
暂无分享,去创建一个
[1] S. Schmid,et al. Real‐time detection reveals that effectors couple dynamin's GTP‐dependent conformational changes to the membrane , 2008, The EMBO journal.
[2] S. Schmid,et al. SNX9 Activities are Regulated by Multiple Phosphoinositides Through both PX and BAR Domains , 2008, Traffic.
[3] T. Wassmer,et al. SNX4 coordinates endosomal sorting of TfnR with dynein-mediated transport into the endocytic recycling compartment , 2007, Nature Cell Biology.
[4] O. Pylypenko,et al. The PX‐BAR membrane‐remodeling unit of sorting nexin 9 , 2007, The EMBO journal.
[5] J. Casanova. Regulation of Arf Activation: the Sec7 Family of Guanine Nucleotide Exchange Factors , 2007, Traffic.
[6] S. Munro,et al. The small G proteins of the Arf family and their regulators. , 2007, Annual review of cell and developmental biology.
[7] Sang‐Gun Ahn,et al. Sorting Nexin 9 Interacts with Dynamin 1 and N-WASP and Coordinates Synaptic Vesicle Endocytosis* , 2007, Journal of Biological Chemistry.
[8] Matthew J. Rardin,et al. The type III effector EspF coordinates membrane trafficking by the spatiotemporal activation of two eukaryotic signaling pathways , 2007, The Journal of cell biology.
[9] W. Stanford,et al. A proteomic screen reveals novel Fas ligand interacting proteins within nervous system Schwann cells , 2007, FEBS letters.
[10] P. Lehner,et al. HIV-1 Nef-induced down-regulation of MHC class I requires AP-1 and clathrin but not PACS-1 and is impeded by AP-2. , 2007, Molecular biology of the cell.
[11] Harvey T. McMahon,et al. Integrating molecular and network biology to decode endocytosis , 2007, Nature.
[12] L. Hinrichsen,et al. Endocytosis: clathrin-mediated membrane budding. , 2007, Current opinion in cell biology.
[13] S. Schmid,et al. SNX9 couples actin assembly to phosphoinositide signals and is required for membrane remodeling during endocytosis. , 2007, Developmental cell.
[14] G. Mills,et al. Interaction of the Wiskott–Aldrich syndrome protein with sorting nexin 9 is required for CD28 endocytosis and cosignaling in T cells , 2007, Proceedings of the National Academy of Sciences.
[15] T. Wassmer,et al. A loss-of-function screen reveals SNX5 and SNX6 as potential components of the mammalian retromer , 2006, Journal of Cell Science.
[16] J. Bonifacino,et al. Interchangeable but Essential Functions of SNX1 and SNX2 in the Association of Retromer with Endosomes and the Trafficking of Mannose 6-Phosphate Receptors , 2006, Molecular and Cellular Biology.
[17] Pietro De Camilli,et al. Phosphoinositides in cell regulation and membrane dynamics , 2006, Nature.
[18] I. Mills,et al. Role of the AP2 β-Appendage Hub in Recruiting Partners for Clathrin-Coated Vesicle Assembly , 2006, PLoS biology.
[19] W. Hong,et al. The Phox (PX) domain proteins and membrane traffic. , 2006, Biochimica et biophysica acta.
[20] J. Bonifacino,et al. Retrograde transport from endosomes to the trans-Golgi network , 2006, Nature Reviews Molecular Cell Biology.
[21] M. A. Edeling,et al. Molecular switches involving the AP-2 beta2 appendage regulate endocytic cargo selection and clathrin coat assembly. , 2006, Developmental cell.
[22] Michael Liss,et al. Identification of preferred protein interactions by phage‐display of the human Src homology‐3 proteome , 2006, EMBO reports.
[23] T. Magnuson,et al. Genetic evidence for a mammalian retromer complex containing sorting nexins 1 and 2. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[24] Yawei Li,et al. Isoform-selective effects of the depletion of ADP-ribosylation factors 1-5 on membrane traffic. , 2005, Molecular biology of the cell.
[25] S. Schmid,et al. SNX9 regulates dynamin assembly and is required for efficient clathrin-mediated endocytosis. , 2005, Molecular biology of the cell.
[26] Judith Klumperman,et al. Sorting Nexin-1 Mediates Tubular Endosome-to-TGN Transport through Coincidence Sensing of High- Curvature Membranes and 3-Phosphoinositides , 2004, Current Biology.
[27] R. Lundmark,et al. Regulated Membrane Recruitment of Dynamin-2 Mediated by Sorting Nexin 9* , 2004, Journal of Biological Chemistry.
[28] M. Robinson. Adaptable adaptors for coated vesicles. , 2004, Trends in cell biology.
[29] I. Mills,et al. Clathrin adaptor epsinR is required for retrograde sorting on early endosomal membranes. , 2004, Developmental cell.
[30] Waltraud X. Schulze,et al. A Novel Proteomic Screen for Peptide-Protein Interactions* , 2004, Journal of Biological Chemistry.
[31] Juan S. Bonifacino,et al. Definition of the Consensus Motif Recognized by γ-Adaptin Ear Domains* , 2004, Journal of Biological Chemistry.
[32] B. Peter,et al. BAR Domains as Sensors of Membrane Curvature: The Amphiphysin BAR Structure , 2004, Science.
[33] R. Lundmark,et al. Sorting Nexin 9 Participates in Clathrin-mediated Endocytosis through Interactions with the Core Components* , 2003, Journal of Biological Chemistry.
[34] J. Donaldson. Multiple Roles for Arf6: Sorting, Structuring, and Signaling at the Plasma Membrane* , 2003, Journal of Biological Chemistry.
[35] M. Roth,et al. Phosphatidylinositol 4 Phosphate Regulates Targeting of Clathrin Adaptor AP-1 Complexes to the Golgi , 2003, Cell.
[36] M. Lemmon,et al. Phosphoinositide Recognition Domains , 2003, Traffic.
[37] S. Pfeffer. Membrane Domains in the Secretory and Endocytic Pathways , 2003, Cell.
[38] A. Motley,et al. EpsinR: an ENTH domain-containing protein that interacts with AP-1. , 2003, Molecular biology of the cell.
[39] Jack E. Dixon,et al. Sorting out the cellular functions of sorting nexins , 2003, Nature Reviews Molecular Cell Biology.
[40] B. Peter,et al. EpsinR: an AP1/clathrin interacting protein involved in vesicle trafficking. , 2003, The Journal of cell biology.
[41] E. Ungewickell,et al. Clint: a novel clathrin-binding ENTH-domain protein at the Golgi. , 2002, Molecular biology of the cell.
[42] J. Rohrer,et al. ARF1.GTP, tyrosine-based signals, and phosphatidylinositol 4,5-bisphosphate constitute a minimal machinery to recruit the AP-1 clathrin adaptor to membranes. , 2002, Molecular biology of the cell.
[43] D. Fremont,et al. Accessory protein recruitment motifs in clathrin-mediated endocytosis. , 2002, Structure.
[44] C. Downes,et al. Subcellular localization of phosphatidylinositol 4,5-bisphosphate using the pleckstrin homology domain of phospholipase C delta1. , 2002, The Biochemical journal.
[45] R. Lundmark,et al. The beta-appendages of the four adaptor-protein (AP) complexes: structure and binding properties, and identification of sorting nexin 9 as an accessory protein to AP-2. , 2002, The Biochemical journal.
[46] F. Gu,et al. PACS‐1 binding to adaptors is required for acidic cluster motif‐mediated protein traffic , 2001, The EMBO journal.
[47] B. Mayer,et al. SH3 domains: complexity in moderation. , 2001, Journal of cell science.
[48] Marino Zerial,et al. Rab proteins as membrane organizers , 2001, Nature Reviews Molecular Cell Biology.
[49] H. McMahon,et al. Crystal structure of the amphiphysin‐2 SH3 domain and its role in the prevention of dynamin ring formation , 1998, The EMBO journal.
[50] M. McNiven,et al. Differential distribution of dynamin isoforms in mammalian cells. , 1998, Molecular biology of the cell.
[51] L. Wan,et al. PACS-1 Defines a Novel Gene Family of Cytosolic Sorting Proteins Required for trans-Golgi Network Localization , 1998, Cell.
[52] Péter Várnai,et al. Visualization of Phosphoinositides That Bind Pleckstrin Homology Domains: Calcium- and Agonist-induced Dynamic Changes and Relationship to Myo-[3H]inositol-labeled Phosphoinositide Pools , 1998, The Journal of cell biology.
[53] S. Hunt,et al. Amphiphysin heterodimers: potential role in clathrin-mediated endocytosis. , 1997, Molecular biology of the cell.
[54] Michael M. Kozlov,et al. How proteins produce cellular membrane curvature , 2006, Nature Reviews Molecular Cell Biology.
[55] G. Marcus,et al. The eloquent ape: genes, brains and the evolution of language , 2006, Nature Reviews Genetics.
[56] M. A. Edeling,et al. Life of a clathrin coat: insights from clathrin and AP structures , 2006, Nature Reviews Molecular Cell Biology.
[57] R. Lundmark,et al. Expression and properties of sorting nexin 9 in dynamin-mediated endocytosis. , 2005, Methods in enzymology.
[58] F. Maxfield,et al. Endocytic recycling , 2004, Nature Reviews Molecular Cell Biology.
[59] Sachdev S Sidhu,et al. Definition of the consensus motif recognized by gamma-adaptin ear domains. , 2004, The Journal of biological chemistry.
[60] M. Babu,et al. Evolving nature of the AP2 a-appendage hub during clathrin-coated vesicle endocytosis , 2004 .
[61] M. Waterfield,et al. Synthesis and function of 3-phosphorylated inositol lipids. , 2001, Annual review of biochemistry.
[62] H. McMahon,et al. Bar Domains and Membrane Curvature: Bringing Your Curves to the Bar , 2022 .