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rab3 Mediates cortical granule exocytosis in the sea urchin egg
Sean Conner
, Gary M. Wessel
Genetics, Cell Biology and Development (TMED)
Research output
:
Contribution to journal
›
Article
›
peer-review
40
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Scopus citations
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Dive into the research topics of 'rab3 Mediates cortical granule exocytosis in the sea urchin egg'. Together they form a unique fingerprint.
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Keyphrases
Sea Urchin Eggs
100%
Rab3
100%
Cortical Granule Exocytosis
100%
Cortical Granules
66%
Effector Domain
44%
Plasma Membrane
22%
Calcium Release
11%
Fertilization
11%
Membrane Fusion
11%
Signal Transduction Pathway
11%
Small GTPase
11%
Synthetic Peptides
11%
Soluble N-ethylmaleimide-sensitive Factor Attachment Protein Receptor (SNARE)
11%
Exocytosis
11%
Integral Membrane Protein
11%
Oogenesis
11%
Conserved Regions
11%
Sea Urchin
11%
Hypervariable Region
11%
Syntaxin
11%
Sequence Domain
11%
Synaptotagmin
11%
Vesicle Docking
11%
Ras Superfamily
11%
Domain Peptide
11%
Egg Activation
11%
Selective Associations
11%
Peptide Competition
11%
Lytechinus Variegatus
11%
Endocytic
11%
Biochemistry, Genetics and Molecular Biology
Exocytosis
100%
Sea Urchin
100%
Peptide
83%
Cell Membrane
33%
Signal Transduction
16%
Oogenesis
16%
Hypervariable Region
16%
Synaptotagmin
16%
Calcium Transport
16%
Membrane Fusion
16%
Integral Membrane Protein
16%
Lytechinus
16%
Ras Superfamily
16%
Syntaxin
16%
Protein Tertiary Structure
16%
Small GTPase
16%
Oocyte Activation
16%
Fertilization
16%
Immunology and Microbiology
Exocytosis
100%
Sea Urchin
100%
Peptides
83%
Cell Membrane
33%
Membrane Fusion
16%
Calcium Transport
16%
Oocyte
16%
Lytechinus
16%
Hypervariable Region
16%
Oocyte Development
16%
Signal Transduction
16%
Protein Tertiary Structure
16%
Fertilization
16%
Neuroscience
Oocyte Activation
16%