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Non-coding RNA interact to regulate neuronal development and function
Bharat R. Iyengar
,
Ashwani Choudhary
, Mayuresh A. Sarangdhar
, K. V. Venkatesh
, Chetan J. Gadgil
, Beena Pillai
Research output
:
Contribution to journal
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Review article
›
peer-review
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Keyphrases
Non-coding RNA (ncRNA)
100%
Neuronal Function
100%
MicroRNA
100%
Neuronal Development
100%
Long Non-coding RNA (LncRNA)
83%
PIWI-interacting RNA (piRNA)
83%
Neurogenesis
50%
Gene Regulation
33%
Synaptic Plasticity
33%
Neurodegenerative Diseases
33%
Transposon
33%
Human Brain
16%
Excitatory Postsynaptic Potential
16%
Cognitive Ability
16%
Nervous System
16%
Invertebrates
16%
Protein-coding Genes
16%
Brain Development
16%
Neuronal Differentiation
16%
Neural Stem Cells
16%
Cellular Physiology
16%
Most Complex
16%
Dysregulated
16%
Three-class
16%
Gene Regulatory Network
16%
Germ Cells
16%
Early Development
16%
DNA Methylation (DNAm)
16%
Functional Role
16%
Multiple Levels
16%
Epigenetic Modification
16%
Regulatory Role
16%
Maternally Inherited
16%
Self-renewal
16%
Non-protein-coding RNA
16%
Complex Biological Systems
16%
Local Architecture
16%
Nervous Function
16%
Neuroscience
MicroRNA
100%
Non-Coding RNA
100%
Neural Development
100%
Piwi-Interacting RNA
83%
Long Non-Coding RNA
66%
Neurogenesis
50%
Synaptic Plasticity
33%
Gene Control
33%
Neurodegenerative Disorder
33%
Transposon
33%
Cognitive Function
16%
Nervous System
16%
Nerve Cell Differentiation
16%
Brain Development
16%
Neural Stem Cell
16%
Gene Regulatory Network
16%
Germ Cell
16%
DNA Methylation
16%
Human Brain
16%
Biochemistry, Genetics and Molecular Biology
Non-Coding RNA
100%
MicroRNA
100%
Piwi-Interacting RNA
83%
Small Interfering RNA
83%
Long Non-Coding RNA
66%
Nervous System Development
50%
Nerve Cell Plasticity
33%
Transposable Element
33%
Gene Control
33%
Transcription
16%
Stem Cell
16%
Germ Cell
16%
Nerve Cell Differentiation
16%
DNA Methylation
16%
Brain Development
16%
Synaptic Potential
16%
Gene Regulatory Network
16%