| Literature DB >> 34814918 |
Ping-Chieh Pao1,2, Li-Huei Tsai3,4.
Abstract
Cdk5 is a proline-directed serine/threonine protein kinase that governs a variety of cellular processes in neurons, the dysregulation of which compromises normal brain function. The mechanisms underlying the modulation of Cdk5, its modes of action, and its effects on the nervous system have been a great focus in the field for nearly three decades. In this review, we provide an overview of the discovery and regulation of Cdk5, highlighting recent findings revealing its role in neuronal/synaptic functions, circadian clocks, DNA damage, cell cycle reentry, mitochondrial dysfunction, as well as its non-neuronal functions under physiological and pathological conditions. Moreover, we discuss evidence underscoring aberrant Cdk5 activity as a common theme observed in many neurodegenerative diseases.Entities:
Keywords: Alzheimer’s disease; Cdk5; Neurodegeneration; p25; p35
Mesh:
Substances:
Year: 2021 PMID: 34814918 PMCID: PMC8609871 DOI: 10.1186/s12929-021-00774-y
Source DB: PubMed Journal: J Biomed Sci ISSN: 1021-7770 Impact factor: 8.410
Fig. 1Single-cell transcriptomic analysis of the expression of Cdk5, Cdk5r1 (the gene encoding p35), and Cdk5r2 (the gene encoding p39) in young and aged mouse brain. The data are based on Ximerakis et al., 2019, Nat. Neurosci., and the graphs were generated by Single Cell Portal website (https://singlecell.broadinstitute.org/single_cell/study/SCP263/aging-mouse-brain). Astrocyte lineage: neural stem cells, astrocyte-restricted precursors and astrocytes. Ependymal cells: ependymocytes, hypendymal cells, tancytes, and choroid plexus epithelial cells. Immune cells: microglia, monocytes, macrophages, dendritic cells, and neutrophils. Neuronal lineage: neuronal-restricted precursors, immature neurons, mature neurons, and neuroendocrine cells. Vasculature cells: endothelial cells, pericytes, hemoglobin-expressing vascular cells, vascular smooth muscle cells, vascular and leptomeningeal cells, and arachnoid barrier cells
List of Cdk5 substrates discussed in this review and their functional categories
| Substrates of Cdk5 | |||
|---|---|---|---|
| Category | Protein/sites | Functional outcome | References |
| Microtubule and cytoskeleton-related function | Promoting axon formation | [ | |
| Regulation of neuronal migration | [ | ||
| Increasing the association between DISC1 and NUDEL | [ | ||
| Regulation of microtubule organization and neuronal migration | [ | ||
| Regulation of neurite outgrowth | [ | ||
| Regulation of neurite outgrowth | [ | ||
| Regulation of neurite morphology and neurite outgrowth | [ | ||
| Regulation of nuclear elongation in migrating neurons | [ | ||
| Regulation of neuronal migration and neurite outgrowth | [ | ||
| Regulation of neuronal migration | [ | ||
| Regulation of neuronal migration | [ | ||
| Regulation of neurite outgrowth | [ | ||
| Synaptic function | Increasing clathrin-mediated endocytosis | [ | |
| Reducing spine density | [ | ||
| Increasing clathrin-mediated endocytosis | [ | ||
| Enhancing excitatory synaptic | [ | ||
| Increasing vesicle release | [ | ||
| Regulation of synaptic plasticity | [ | ||
| Regulation of synaptic plasticity | [ | ||
| Regulation of synaptic homeostasis | [ | ||
| Regulation of activity-dependent structural plasticity | [ | ||
| Regulation of calcium influx | [ | ||
| Regulation of calcium influx | [ | ||
| Circadian clock | Promoting CLOCK nuclear translocalization and enhancing its activity | [ | |
| Stabilizing PER2 and promoting its nuclear translocalization | [ | ||
| Neurodegeneration | Regulating of APP localization | [ | |
| Regulation of DNA damage response | [ | ||
| Promoting mitochondrial fission | [ | ||
| Reducing Htt cleavage and aggregation | [ | ||
| Reducing Parkin ubiquitin ligase activity | [ | ||
| Reducing peroxidase activity | [ | ||
| Increasing | [ | ||
| Reducing microtubule binding | [ | ||
| Non-neuronal function | Facilitating actin polarization and migration of lymphocytes to chemokine signals | [ | |
| Activating tumor suppressor DCL1 | [ | ||
| Promoting the degradation of tumor suppressive histone variant macroH2A1 | [ | ||
| Promoting OPC maturation | [ | ||
| Inducing insulin resistance | [ | ||
| Promotes melanoma cell extravasation | [ | ||
Fig. 2Activation of Cdk5 and its functions under physiological or pathological conditions