[Intrinsic and extrinsic mechanisms regulating neuronal dendrite morphogenesis]. Article Swipe
YOU?
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· 2020
· Open Access
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· DOI: https://doi.org/10.3785/j.issn.1008-9292.2020.02.09
Neurons are the structural and functional unit of the nervous system. Precisely regulated dendrite morphogenesis is the basis of neural circuit assembly. Numerous studies have been conducted to explore the regulatory mechanisms of dendritic morphogenesis. According to their action regions, we divide them into two categories: the intrinsic and extrinsic regulators of neuronal dendritic morphogenesis. Intrinsic factors are cell type-specific transcription factors, actin polymerization or depolymerization regulators and regulators of the secretion or endocytic pathways. These intrinsic factors are produced by neuron itself and play an important role in regulating the development of dendrites. The extrinsic regulators are either secreted proteins or transmembrane domain containing cell adhesion molecules. They often form receptor-ligand pairs to mediate attractive or repulsive dendritic guidance. In this review, we summarize recent findings on the intrinsic and external molecular mechanisms of dendrite morphogenesis from multiple model organisms, including Caenorhabditis elegans, Drosophila and mice. These studies will provide a better understanding on how defective dendrite development and maintenance are associated with neurological diseases.
Related Topics
- Type
- article
- Language
- en
- Landing Page
- https://pubmed.ncbi.nlm.nih.gov/32621417
- OA Status
- green
- Related Works
- 20
- OpenAlex ID
- https://openalex.org/W3039330583
Raw OpenAlex JSON
- OpenAlex ID
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https://openalex.org/W3039330583Canonical identifier for this work in OpenAlex
- DOI
-
https://doi.org/10.3785/j.issn.1008-9292.2020.02.09Digital Object Identifier
- Title
-
[Intrinsic and extrinsic mechanisms regulating neuronal dendrite morphogenesis].Work title
- Type
-
articleOpenAlex work type
- Language
-
enPrimary language
- Publication year
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2020Year of publication
- Publication date
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2020-05-25Full publication date if available
- Authors
-
Weixia Zhao, Wei ZouList of authors in order
- Landing page
-
https://pubmed.ncbi.nlm.nih.gov/32621417Publisher landing page
- Open access
-
YesWhether a free full text is available
- OA status
-
greenOpen access status per OpenAlex
- OA URL
-
https://www.ncbi.nlm.nih.gov/pmc/articles/8800678Direct OA link when available
- Concepts
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Morphogenesis, Dendrite (mathematics), Biology, Cell biology, Neuroscience, Dendritic filopodia, Caenorhabditis elegans, Dendritic spine, Genetics, Gene, Hippocampal formation, Mathematics, GeometryTop concepts (fields/topics) attached by OpenAlex
- Cited by
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0Total citation count in OpenAlex
- Related works (count)
-
20Other works algorithmically related by OpenAlex
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| abstract_inverted_index.play | 84 |
| abstract_inverted_index.role | 87 |
| abstract_inverted_index.them | 42 |
| abstract_inverted_index.this | 121 |
| abstract_inverted_index.unit | 6 |
| abstract_inverted_index.will | 149 |
| abstract_inverted_index.with | 163 |
| abstract_inverted_index.These | 75, 147 |
| abstract_inverted_index.actin | 62 |
| abstract_inverted_index.basis | 17 |
| abstract_inverted_index.mice. | 146 |
| abstract_inverted_index.model | 139 |
| abstract_inverted_index.often | 109 |
| abstract_inverted_index.pairs | 112 |
| abstract_inverted_index.their | 37 |
| abstract_inverted_index.action | 38 |
| abstract_inverted_index.better | 152 |
| abstract_inverted_index.divide | 41 |
| abstract_inverted_index.domain | 103 |
| abstract_inverted_index.either | 98 |
| abstract_inverted_index.itself | 82 |
| abstract_inverted_index.neural | 19 |
| abstract_inverted_index.neuron | 81 |
| abstract_inverted_index.recent | 125 |
| abstract_inverted_index.Neurons | 0 |
| abstract_inverted_index.circuit | 20 |
| abstract_inverted_index.explore | 28 |
| abstract_inverted_index.factors | 56, 77 |
| abstract_inverted_index.mediate | 114 |
| abstract_inverted_index.nervous | 9 |
| abstract_inverted_index.provide | 150 |
| abstract_inverted_index.review, | 122 |
| abstract_inverted_index.studies | 23, 148 |
| abstract_inverted_index.system. | 10 |
| abstract_inverted_index.Numerous | 22 |
| abstract_inverted_index.adhesion | 106 |
| abstract_inverted_index.dendrite | 13, 135, 157 |
| abstract_inverted_index.external | 131 |
| abstract_inverted_index.factors, | 61 |
| abstract_inverted_index.findings | 126 |
| abstract_inverted_index.multiple | 138 |
| abstract_inverted_index.neuronal | 52 |
| abstract_inverted_index.produced | 79 |
| abstract_inverted_index.proteins | 100 |
| abstract_inverted_index.regions, | 39 |
| abstract_inverted_index.secreted | 99 |
| abstract_inverted_index.According | 35 |
| abstract_inverted_index.Intrinsic | 55 |
| abstract_inverted_index.Precisely | 11 |
| abstract_inverted_index.assembly. | 21 |
| abstract_inverted_index.conducted | 26 |
| abstract_inverted_index.defective | 156 |
| abstract_inverted_index.dendritic | 33, 53, 118 |
| abstract_inverted_index.diseases. | 165 |
| abstract_inverted_index.endocytic | 73 |
| abstract_inverted_index.extrinsic | 49, 95 |
| abstract_inverted_index.guidance. | 119 |
| abstract_inverted_index.important | 86 |
| abstract_inverted_index.including | 141 |
| abstract_inverted_index.intrinsic | 47, 76, 129 |
| abstract_inverted_index.molecular | 132 |
| abstract_inverted_index.pathways. | 74 |
| abstract_inverted_index.regulated | 12 |
| abstract_inverted_index.repulsive | 117 |
| abstract_inverted_index.secretion | 71 |
| abstract_inverted_index.summarize | 124 |
| abstract_inverted_index.associated | 162 |
| abstract_inverted_index.attractive | 115 |
| abstract_inverted_index.containing | 104 |
| abstract_inverted_index.dendrites. | 93 |
| abstract_inverted_index.functional | 5 |
| abstract_inverted_index.mechanisms | 31, 133 |
| abstract_inverted_index.molecules. | 107 |
| abstract_inverted_index.organisms, | 140 |
| abstract_inverted_index.regulating | 89 |
| abstract_inverted_index.regulators | 50, 66, 68, 96 |
| abstract_inverted_index.regulatory | 30 |
| abstract_inverted_index.structural | 3 |
| abstract_inverted_index.categories: | 45 |
| abstract_inverted_index.development | 91, 158 |
| abstract_inverted_index.maintenance | 160 |
| abstract_inverted_index.elegans</i>, | 143 |
| abstract_inverted_index.neurological | 164 |
| abstract_inverted_index.morphogenesis | 14, 136 |
| abstract_inverted_index.transcription | 60 |
| abstract_inverted_index.transmembrane | 102 |
| abstract_inverted_index.type-specific | 59 |
| abstract_inverted_index.understanding | 153 |
| abstract_inverted_index.morphogenesis. | 34, 54 |
| abstract_inverted_index.polymerization | 63 |
| abstract_inverted_index.receptor-ligand | 111 |
| abstract_inverted_index.depolymerization | 65 |
| abstract_inverted_index.<i>Caenorhabditis | 142 |
| abstract_inverted_index.<i>Drosophila</i> | 144 |
| cited_by_percentile_year | |
| countries_distinct_count | 1 |
| institutions_distinct_count | 2 |
| citation_normalized_percentile.value | 0.07141515 |
| citation_normalized_percentile.is_in_top_1_percent | False |
| citation_normalized_percentile.is_in_top_10_percent | False |