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51. Diverse binding modes, same goal: The receptor recognition mechanism of botulinum neurotoxin

52. The Role of Calmodulin vs. Synaptotagmin in Exocytosis

53. SYT1-Associated Neurodevelopmental Disorder: A Narrative Review

54. Calcium-dependent docking of synaptic vesicles.

55. Late onset of Synaptotagmin 2a expression at synapses relevant to social behavior.

56. Function of Drosophila Synaptotagmins in membrane trafficking at synapses.

57. Fast, Ca2+-dependent exocytosis at nerve terminals: Shortcomings of SNARE-based models

58. Protein kinase C is a calcium sensor for presynaptic short-term plasticity.

59. Translating neuronal activity at the synapse: presynaptic calcium sensors in short-term plasticity

60. Distinct insulin granule subpopulations implicated in the secretory pathology of diabetes types 1 and 2

61. Synaptotagmin 7 docks synaptic vesicles to support facilitation and Doc2α-triggered asynchronous release.

62. Synaptotagmin-7 Counteracts Short-Term Depression during Phasic Dopamine Release.

63. SNAP25 disease mutations change the energy landscape for synaptic exocytosis due to aberrant SNARE interactions.

64. Synaptic proteins promote calcium-triggered fast transition from point contact to full fusion.

65. Creating Contacts Between Replication and Movement at Plasmodesmata – A Role for Membrane Contact Sites in Plant Virus Infections?

66. Synergistic roles of Synaptotagmin-1 and complexin in calcium-regulated neuronal exocytosis

67. Drosophila Synaptotagmin 7 negatively regulates synaptic vesicle release and replenishment in a dosage-dependent manner

68. PIP4K2A regulates intracellular cholesterol transport through modulating PI(4,5)P2 homeostasis

69. Synaptotagmin‐7 enhances calcium‐sensing of chromaffin cell granules and slows discharge of granule cargos.

70. Fast, synchronous neurotransmitter release: Past, present and future.

71. Creating Contacts Between Replication and Movement at Plasmodesmata – A Role for Membrane Contact Sites in Plant Virus Infections?

72. Involvement of the synaptotagmin/stonin2 system in vesicular transport regulated by semaphorins in Caenorhabditis elegans epidermal cells.

73. An Epilepsy-Associated SV2A Mutation Disrupts Synaptotagmin-1 Expression and Activity-Dependent Trafficking.

74. Cytotoxic Granule Trafficking and Fusion in Synaptotagmin7-Deficient Cytotoxic T Lymphocytes.

75. Structural and functional relationships between plasmodesmata and plant endoplasmic reticulum–plasma membrane contact sites consisting of three synaptotagmins.

76. Increased erythrocyte osmotic fragility in hypothyroidism.

77. Synaptotagmin 1 oligomers clamp and regulate different modes of neurotransmitter release.

78. Synaptotagmins: Beyond Presynaptic Neurotransmitter Release.

79. The Krebs Cycle Enzyme Isocitrate Dehydrogenase 3A Couples Mitochondrial Metabolism to Synaptic Transmission

80. Triple Function of Synaptotagmin 7 Ensures Efficiency of High-Frequency Transmission at Central GABAergic Synapses

81. Synaptotagmin 1-triggered lipid signaling facilitates coupling of exo- and endocytosis.

82. Plasma Membrane Receptors Involved in the Binding and Response of Osteoclasts to Noncellular Components of the Bone

83. Synaptotagmin 2 Is the Fast Ca2+ Sensor at a Central Inhibitory Synapse

84. Synaptotagmin Ca2+ Sensors and Their Spatial Coupling to Presynaptic Cav Channels in Central Cortical Synapses

86. Gangliosides interact with synaptotagmin to form the high-affinity receptor complex for botulinum neurotoxin B.

87. Trafficking of synaptic vesicles is changed at the hypothalamus by exposure to an 835 MHz radiofrequency electromagnetic field.

88. Recovery from tachyphylaxis of TRPV1 coincides with recycling to the surface membrane.

89. Synaptotagmin 5 regulates Ca2+-dependent Weibel-Palade body exocytosis in human endothelial cells.

90. Synaptotagmin oligomers are necessary and can be sufficient to form a Ca2+‐sensitive fusion clamp.

91. Symmetrical organization of proteins under docked synaptic vesicles.

92. Synaptotagmin Ca2+ Sensors and Their Spatial Coupling to Presynaptic Cav Channels in Central Cortical Synapses.

93. PRRT2 Is a Key Component of the Ca2+-Dependent Neurotransmitter Release Machinery

94. Emergence and evolution of neuronal genes deciphered by genome informatics

95. Structural and Biochemical Characterization of Botulinum Neurotoxin Subtype B2 Binding to Its Receptors

98. The synaptotagmin juxtamembrane domain is involved in neuroexocytosis

99. Synaptotagmin-11 Inhibits Synaptic Vesicle Endocytosis via Endophilin A1.

100. Loss of tetraspanin‐7 expression reduces pancreatic β‐cell exocytosis Ca 2+ sensitivity but has limited effect on systemic metabolism

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