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The expression and alternative splicing of alpha-neurexins during Xenopus development
Zhihong Zeng
,
Colin Sharpe
, J. Simons
,
Darek Gorecki
Institute of Life Sciences and Healthcare
Research output
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Contribution to journal
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Article
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peer-review
Overview
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Dive into the research topics of 'The expression and alternative splicing of alpha-neurexins during Xenopus development'. Together they form a unique fingerprint.
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INIS
splicing
100%
genes
80%
tubes
80%
spinal cord
40%
data
20%
proteins
20%
regulations
20%
frogs
20%
optics
20%
oocytes
20%
embryonic development
20%
Biochemistry, Genetics and Molecular Biology
Xenopus
100%
Alternative Splicing
100%
Neurexin
100%
Neural Tube
40%
Isoform
10%
Embryogenesis
10%
Protein Isoform
10%
Interneuron
10%
Anura
10%
Xenopus laevis
10%
Synapse
10%
Synaptogenesis
10%
Neuroscience
Alternative Splicing
100%
Neurexin
100%
Neural Tube
40%
Hindbrain
20%
Synapse
10%
Staining Technique
10%
Interneuron
10%
Synaptogenesis
10%
Isoprotein
10%
Anura
10%