Page 225 - Read Online
P. 225
Loh et al. Extracell Vesicles Circ Nucleic Acids 2023;4:568-87 https://dx.doi.org/10.20517/evcna.2023.34 Page 19
78. Park JJ, Cawley NX, Loh YP. Carboxypeptidase E cytoplasmic tail-driven vesicle transport is key for activity-dependent secretion of
peptide hormones. Mol Endocrinol 2008;22:989-1005. DOI PubMed PMC
79. Park JJ, Cawley NX, Loh YP. A bi-directional carboxypeptidase E-driven transport mechanism controls BDNF vesicle homeostasis
in hippocampal neurons. Mol Cell Neurosci 2008;39:63-73. DOI PubMed PMC
80. Lund VK, Lycas MD, Schack A, Andersen RC, Gether U, Kjaerulff O. Rab2 drives axonal transport of dense core vesicles and
lysosomal organelles. Cell Rep 2021;35:108973. DOI PubMed
81. Hummel JJA, Hoogenraad CC. Specific KIF1A-adaptor interactions control selective cargo recognition. J Cell Biol
2021;220:e202105011. DOI PubMed PMC
82. Park J, Miller KG, De Camilli P, Yogev S. End Binding protein 1 promotes specific motor-cargo association in the cell body prior to
axonal delivery of dense core vesicles. bioRxiv 2023:Epub ahead of print. DOI PubMed PMC
83. Bharat V, Siebrecht M, Burk K, et al. Capture of dense core vesicles at synapses by JNK-dependent phosphorylation of
synaptotagmin-4. Cell Rep 2017;21:2118-33. DOI PubMed PMC
84. Makani V, Sultana R, Sie KS, et al. Annexin A1 complex mediates oxytocin vesicle transport. J Neuroendocrinol 2013;25:1241-54.
DOI PubMed PMC
85. Goodwin PR, Sasaki JM, Juo P. Cyclin-dependent kinase 5 regulates the polarized trafficking of neuropeptide-containing dense-core
vesicles in Caenorhabditis elegans motor neurons. J Neurosci 2012;32:8158-72. DOI PubMed PMC
86. Kwinter DM, Lo K, Mafi P, Silverman MA. Dynactin regulates bidirectional transport of dense-core vesicles in the axon and
dendrites of cultured hippocampal neurons. Neuroscience 2009;162:1001-10. DOI PubMed
87. Bittins CM, Eichler TW, Hammer JA 3rd, Gerdes HH. Dominant-negative myosin Va impairs retrograde but not anterograde axonal
transport of large dense core vesicles. Cell Mol Neurobiol 2010;30:369-79. DOI PubMed PMC
88. Tsuboi T, da Silva Xavier G, Leclerc I, Rutter GA. 5'-AMP-activated protein kinase controls insulin-containing secretory vesicle
dynamics. J Biol Chem 2003;278:52042-51. DOI PubMed
89. Li G, Rungger-Brändle E, Just I, Jonas JC, Aktories K, Wollheim CB. Effect of disruption of actin filaments by Clostridium
botulinum C2 toxin on insulin secretion in HIT-T15 cells and pancreatic islets. Mol Biol Cell 1994;5:1199-213. DOI PubMed PMC
90. Thurmond DC, Gonelle-Gispert C, Furukawa M, Halban PA, Pessin JE. Glucose-stimulated insulin secretion is coupled to the
interaction of actin with the t-SNARE (target membrane soluble N-ethylmaleimide-sensitive factor attachment protein receptor
protein) complex. Mol Endocrinol 2003;17:732-42. DOI PubMed
91. Ehre C, Rossi AH, Abdullah LH, et al. Barrier role of actin filaments in regulated mucin secretion from airway goblet cells. Am J
Physiol Cell Physiol 2005;288:C46-56. DOI
2+
92. Bruun TZ, Høy M, Gromada J. Scinderin-derived actin-binding peptides inhibit Ca - and GTPgammaS-dependent exocytosis in
mouse pancreatic beta-cells. Eur J Pharmacol 2000;403:221-4. DOI PubMed
93. Muallem S, Kwiatkowska K, Xu X, Yin HL. Actin filament disassembly is a sufficient final trigger for exocytosis in nonexcitable
cells. J Cell Biol 1995;128:589-98. DOI PubMed PMC
94. Tomas A, Yermen B, Min L, Pessin JE, Halban PA. Regulation of pancreatic beta-cell insulin secretion by actin cytoskeleton
remodelling: role of gelsolin and cooperation with the MAPK signalling pathway. J Cell Sci 2006;119:2156-67. DOI PubMed
95. Pigeau GM, Kolic J, Ball BJ, et al. Insulin granule recruitment and exocytosis is dependent on p110gamma in insulinoma and human
beta-cells. Diabetes 2009;58:2084-92. DOI PubMed PMC
96. Oakley GG, Loberg LI, Yao J, et al. UV-induced hyperphosphorylation of replication protein a depends on DNA replication and
expression of ATM protein. Mol Biol Cell 2001;12:1199-213. DOI PubMed PMC
97. Gasman S, Chasserot-Golaz S, Malacombe M, Way M, Bader MF. Regulated exocytosis in neuroendocrine cells: a role for
subplasmalemmal Cdc42/N-WASP-induced actin filaments. Mol Biol Cell 2004;15:520-31. DOI PubMed PMC
98. Rudolf R, Kögel T, Kuznetsov SA, et al. Myosin Va facilitates the distribution of secretory granules in the F-actin rich cortex of
PC12 cells. J Cell Sci 2003;116:1339-48. DOI
99. Wu XS, Rao K, Zhang H, et al. Identification of an organelle receptor for myosin-Va. Nat Cell Biol 2002;4:271-8. DOI
100. Rosé SD, Lejen T, Casaletti L, Larson RE, Pene TD, Trifaró JM. Myosins II and V in chromaffin cells: myosin V is a chromaffin
vesicle molecular motor involved in secretion. J Neurochem 2003;85:287-98. DOI
101. Yi Z, Yokota H, Torii S, et al. The Rab27a/granuphilin complex regulates the exocytosis of insulin-containing dense-core granules.
Mol Cell Biol 2002;22:1858-67. DOI PubMed PMC
102. Desnos C, Huet S, Fanget I, et al. Myosin va mediates docking of secretory granules at the plasma membrane. J Neurosci
2007;27:10636-45. DOI PubMed PMC
103. Kasai K, Ohara-Imaizumi M, Takahashi N, et al. Rab27a mediates the tight docking of insulin granules onto the plasma membrane
during glucose stimulation. J Clin Invest 2005;115:388-96. DOI
104. Waselle L, Coppola T, Fukuda M, et al. Involvement of the Rab27 binding protein Slac2c/MyRIP in insulin exocytosis. Mol Biol Cell
2003;14:4103-13. DOI PubMed PMC
105. Sato O, Li XD, Ikebe M. Myosin Va becomes a low duty ratio motor in the inhibited form. J Biol Chem 2007;282:13228-39. DOI
PubMed
106. Johnstone RM, Adam M, Hammond JR, Orr L, Turbide C. Vesicle formation during reticulocyte maturation. Association of plasma
membrane activities with released vesicles (exosomes). J Biol Chem 1987;262:9412-20. DOI PubMed
107. Karimi N, Dalirfardouei R, Dias T, Lötvall J, Lässer C. Tetraspanins distinguish separate extracellular vesicle subpopulations in

