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[1] J. Kaplan,et al. UNC-13 Interaction with Syntaxin Is Required for Synaptic Transmission , 2005, Current Biology.
[2] Thomas C. Südhof,et al. RIM1α is required for presynaptic long-term potentiation , 2002, Nature.
[3] A. Hudspeth,et al. RIM Binding Proteins (RBPs) Couple Rab3-Interacting Molecules (RIMs) to Voltage-Gated Ca2+ Channels , 2002, Neuron.
[4] I. Macara,et al. Mutants of Rab3A analogous to oncogenic Ras mutants. Sensitivity to Rab3A-GTPase activating protein and Rab3A-guanine nucleotide releasing factor. , 1993, The Journal of biological chemistry.
[5] Yasuhiro Sunaga,et al. cAMP-GEFII is a direct target of cAMP in regulated exocytosis , 2000, Nature Cell Biology.
[6] Erik M. Jorgensen,et al. A post-docking role for active zone protein Rim , 2001, Nature Neuroscience.
[7] T. Shibasaki,et al. Interaction of ATP Sensor, cAMP Sensor, Ca2+ Sensor, and Voltage-dependent Ca2+ Channel in Insulin Granule Exocytosis* , 2004, Journal of Biological Chemistry.
[8] T. Shibasaki,et al. Noc2 is essential in normal regulation of exocytosis in endocrine and exocrine cells. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[9] J. Miyazaki,et al. Essential role of Epac2/Rap1 signaling in regulation of insulin granule dynamics by cAMP , 2007, Proceedings of the National Academy of Sciences.
[10] M. Fukuda. Alternative splicing in the first α‐helical region of the Rab‐binding domain of Rim regulates Rab3A binding activity: is Rim a Rab3 effector protein during evolution? , 2004, Genes to cells : devoted to molecular & cellular mechanisms.
[11] Ralf Schneggenburger,et al. A Munc13/RIM/Rab3 tripartite complex: from priming to plasticity? , 2005, The EMBO journal.
[12] Nils Brose,et al. Functional Interaction of the Active Zone Proteins Munc13-1 and RIM1 in Synaptic Vesicle Priming , 2001, Neuron.
[13] M. Loder,et al. Insulin Storage and Glucose Homeostasis in Mice Null for the Granule Zinc Transporter ZnT8 and Studies of the Type 2 Diabetes–Associated Variants , 2009, Diabetes.
[14] T. Südhof,et al. A conformational switch in syntaxin during exocytosis: role of munc18 , 1999, The EMBO journal.
[15] Thomas C. Südhof,et al. Phosphorylation of RIM1α by PKA Triggers Presynaptic Long-Term Potentiation at Cerebellar Parallel Fiber Synapses , 2003, Cell.
[16] Y. Takai,et al. ELKS, a protein structurally related to the active zone protein CAST, is involved in Ca2+‐dependent exocytosis from PC12 cells , 2006, Genes to cells : devoted to molecular & cellular mechanisms.
[17] E. Neher,et al. Munc13‐1 acts as a priming factor for large dense‐core vesicles in bovine chromaffin cells , 2000, The EMBO journal.
[18] J. Holst,et al. Distinct effects of glucose-dependent insulinotropic polypeptide and glucagon-like peptide-1 on insulin secretion and gut motility. , 2005, Diabetes.
[19] M. Fukuda. Distinct Rab Binding Specificity of Rim1, Rim2, Rabphilin, and Noc2 , 2003, The Journal of Biological Chemistry.
[20] H. Kasai,et al. The HNF-1 target collectrin controls insulin exocytosis by SNARE complex formation. , 2005, Cell metabolism.
[21] T. Shibasaki,et al. Roles of cAMP signalling in insulin granule exocytosis , 2009, Diabetes, obesity & metabolism.
[22] A. Fischer,et al. Mutations in RAB27A cause Griscelli syndrome associated with haemophagocytic syndrome , 2000, Nature Genetics.
[23] Jean-Charles Sanchez,et al. Proteomics Analysis of Insulin Secretory Granules*S , 2007, Molecular & Cellular Proteomics.
[24] Thomas C. Südhof,et al. Rim is a putative Rab3 effector in regulating synaptic-vesicle fusion , 1997, Nature.
[25] D. Drucker. The biology of incretin hormones. , 2006, Cell metabolism.
[26] S. Itohara,et al. Granuphilin molecularly docks insulin granules to the fusion machinery , 2005, The Journal of cell biology.
[27] Y. Akimoto,et al. ELKS, a protein structurally related to the active zone-associated protein CAST, is expressed in pancreatic beta cells and functions in insulin exocytosis: interaction of ELKS with exocytotic machinery analyzed by total internal reflection fluorescence microscopy. , 2005, Molecular biology of the cell.
[28] J. Miyazaki,et al. Establishment of a pancreatic beta cell line that retains glucose-inducible insulin secretion: special reference to expression of glucose transporter isoforms. , 1990, Endocrinology.
[29] Aaron M. Beedle,et al. RIM1 confers sustained activity and neurotransmitter vesicle anchoring to presynaptic Ca2+ channels , 2007, Nature Neuroscience.
[30] L. Kang,et al. Munc13-1 is required for the sustained release of insulin from pancreatic beta cells. , 2006, Cell metabolism.
[31] T. Shibasaki,et al. Critical Role of cAMP-GEFII·Rim2 Complex in Incretin-potentiated Insulin Secretion* , 2001, The Journal of Biological Chemistry.
[32] F. Varoqueaux,et al. Binding to Rab3A-interacting Molecule RIM Regulates the Presynaptic Recruitment of Munc13-1 and ubMunc13-2* , 2006, Journal of Biological Chemistry.
[33] T. Südhof,et al. Genomic definition of RIM proteins: evolutionary amplification of a family of synaptic regulatory proteins. , 2003, Genomics.
[34] F. Ashcroft,et al. Chronic Palmitate Exposure Inhibits Insulin Secretion by Dissociation of Ca2+ Channels from Secretory Granules , 2009, Cell metabolism.
[35] Thomas C. Südhof,et al. RIM1α forms a protein scaffold for regulating neurotransmitter release at the active zone , 2002, Nature.
[36] H. Kasai,et al. Rab27a mediates the tight docking of insulin granules onto the plasma membrane during glucose stimulation. , 2005, The Journal of clinical investigation.
[37] J. Bos,et al. 8‐pCPT‐2′‐O‐Me‐cAMP‐AM: An Improved Epac‐Selective cAMP Analogue , 2008, Chembiochem : a European journal of chemical biology.
[38] Alan Morgan,et al. Secretory granule exocytosis. , 2003, Physiological reviews.
[39] T. Shibasaki,et al. Rab11 and its effector Rip11 participate in regulation of insulin granule exocytosis , 2009, Genes to cells : devoted to molecular & cellular mechanisms.
[40] E. Jorgensen,et al. An open form of syntaxin bypasses the requirement for UNC-13 in vesicle priming , 2001, Nature.
[41] M. Verhage,et al. Vesicle Docking in Regulated Exocytosis , 2008, Traffic.
[42] Nils Brose,et al. Munc13-1 Is a Presynaptic Phorbol Ester Receptor that Enhances Neurotransmitter Release , 1998, Neuron.
[43] T. Shibasaki,et al. Piccolo, a Ca2+ sensor in pancreatic beta-cells. Involvement of cAMP-GEFII.Rim2. Piccolo complex in cAMP-dependent exocytosis. , 2002, The Journal of biological chemistry.
[44] T. Shibasaki,et al. PKA-dependent and PKA-independent pathways for cAMP-regulated exocytosis. , 2005, Physiological reviews.
[45] T. Südhof. The synaptic vesicle cycle , 2004 .
[46] R Llinás,et al. Microdomains of high calcium concentration in a presynaptic terminal. , 1992, Science.