DDX6 Gene

gene · SciDEX wiki

Overview

DDX6 Gene
**Gene Symbol** DDX6
**Full Name** DEAD-Box Helicase 6
**Chromosomal Location** 11p13
**NCBI Gene ID** 1656
**OMIM** 601834
**Ensembl ID** ENSG00000110367
**UniProt ID** P46193
**Aliases** p54, RCK, DDX6, HELR
Protein Interaction Type
**G3BP1** Direct binding
**GW182** Direct binding
**DCP1/DCP2** Direct binding
**CCR4-NOT** Direct binding
**Ago2** Direct binding
**FMRP** Direct binding
**TDP-43** Indirect
**FUS** Indirect
Associated Diseases Als
KG Connections 3 edges

The DDX6 gene encodes DEAD-Box Helicase 6 (also known as p54, RCK, or DDX6), a member of the DEAD-box family of RNA helicases. DDX6 is a highly conserved ATP-dependent RNA helicase that plays central roles in RNA metabolism, including mRNA decay, translational repression, and the formation of RNA granules. DDX6 is a major component of processing bodies (P-bodies) and stress granules, which are cytoplasmic RNA-protein aggregates implicated in the pathogenesis of Amyotrophic Lateral Sclerosis (ALS), Frontotemporal Dementia (FTD), and other neurodegenerative diseases. 1DDX6 in stress granules and disease. Mol Cell. 20152015 · PMID 26412306Open reference2DDX6 mutations in ALS/FTD. Brain. 20212021 · PMID 33969503Open reference

Gene Information

Protein Structure

DDX6 is a 482-amino acid protein with a molecular weight of approximately 54 kDa. It contains the characteristic motifs of the DEAD-box helicase family:

Core Domains

  • Motif I (AxxGxGKT): ATP binding

  • Motif II (DEAD): ATP hydrolysis (helicase activity)

  • Motif III: ATP-dependent RNA unwinding

  • Motif IV: RNA binding

  • Motif V: RNA binding

  • Motif VI: ATP hydrolysis and helicase activity

Structural Features

  • Two RecA-like helicase domains (N-terminal and C-terminal)

  • Flexible linker between domains

  • Multiple post-translational modification sites

  • RGG-rich N-terminal region involved in protein-protein interactions

The DEAD box motif (Asp-Glu-Ala-Asp) gives the family its name and is essential for ATP hydrolysis. DDX6’s helicase activity is regulated by ATP binding and hydrolysis, which controls its interaction with RNA and other proteins. 3DDX6 in miRNA function2007 · PMID 17803939Open reference

Cellular Functions

Processing Bodies (P-Bodies)

DDX6 is a central component of P-bodies, which are cytoplasmic foci involved in mRNA decay and translational repression:

  • DDX6 recruits other P-body components including GW182, CCR4-NOT, and DCP1/DCP2

  • DDX6 promotes mRNA decapping and 5’-to-3’ decay

  • DDX6 mediates translational repression through interaction with the miRNA pathway

  • P-bodies serve as sites of mRNA storage and degradation

  • DDX6 ATPase activity regulates P-body dynamics 4DDX6 in P-body formation. J Cell Biol. 20172017 · PMID 29196613Open reference

Stress Granules

DDX6 is recruited to stress granules, which form in response to cellular stress:

  • Stress granules contain translationally stalled mRNPs

  • DDX6 interacts with G3BP1, TIA-1, and other stress granule markers

  • DDX6 regulates stress granule assembly and dynamics

  • ATPase-deficient DDX6 mutants alter stress granule behavior

  • DDX6-containing stress granules can transition to pathological aggregates in disease 5ATPase-deficient DDX6 mutants alter stress granule dynamics. J Cell Sci. 20162016 · PMID 27252168Open reference6DDX6 in stress granule assembly. Nat Cell Biol. 20222022 · PMID 35618838Open reference

mRNA Decay and Translation Regulation

DDX6 participates in multiple mRNA regulatory pathways:

Decapping and Decay

  • DDX6 promotes mRNA decapping through interaction with DCP1/DCP2

  • Facilitates 5’-to-3’ exonucleolytic decay

  • DDX6 recruits the CCR4-NOT deadenylation complex

Translational Repression

  • DDX6 blocks translation initiation by interfering with eIF4E function

  • Interacts with P-bodies and represses translation

  • Plays roles in miRNA-mediated gene silencing

  • Can also promote translation in certain contexts 7DDX6 in mRNA decay pathways. Mol Cell Biol. 20082008 · PMID 18541687Open reference

Role in the Nervous System

Neuronal Expression

DDX6 is widely expressed in the brain with high levels in:

  • Cortex — pyramidal neurons

  • Hippocampus — CA1 and CA3 pyramidal cells

  • Cerebellum — Purkinje cells

  • Spinal cord motor neurons

  • Throughout the central and peripheral nervous system

Synaptic Function

In neurons, DDX6 localizes to:

  • Dendritic shafts and spines

  • Synaptic terminals

  • RNA granules in dendrites

Local Protein Synthesis

DDX6 regulates local translation at synapses, which is critical for synaptic plasticity and memory formation. DDX6-containing RNA granules transport transcripts to dendritic compartments where translation can be activated by synaptic activity. 8DDX6 and neuronal RNA granules. J Neurosci. 20162016 · PMID 27402835Open reference

Synaptic Plasticity

DDX6 is involved in synaptic plasticity mechanisms:

  • Regulates translation of synaptic proteins

  • Participates in long-term potentiation (LTP)

  • Affects dendritic spine morphology

  • Required for memory consolidation 9DDX6 in synaptic plasticity and memory. EMBO J. 20192019 · PMID 30850347Open reference

Neuronal Stress Response

DDX6 participates in the neuronal stress response:

  • Forms stress granules in response to oxidative stress

  • Aggregates in pathological inclusions in neurodegenerative diseases

  • May protect against proteotoxic stress

  • Dysregulation leads to toxic gain-of-function

Disease Associations

Amyotrophic Lateral Sclerosis (ALS)

DDX6 is directly implicated in ALS pathogenesis:

  • DDX6 is a major component of stress granules that become pathological in ALS

  • Mutations in DDX6 have been identified in ALS and FTD patients

  • DDX6-positive inclusions are found in motor neurons of ALS patients

  • DDX6 aggregates colocalize with TDP-43 inclusions in most ALS cases

  • DDX6 dysfunction may contribute to RNA metabolism defects in ALS

  • DDX6 variants affect disease progression and phenotype 2DDX6 mutations in ALS/FTD. Brain. 20212021 · PMID 33969503Open reference

Frontotemporal Dementia (FTD)

DDX6 is involved in FTD:

  • DDX6-positive inclusions are found in some FTD cases

  • DDX6 mutations cause familial FTD in some families

  • DDX6 interacts with other FTD proteins including FUS and TDP-43

  • DDX6 dysfunction may contribute to RNA dysregulation in FTD

  • DDX6 is in the FTLD-U subtype with TDP-43 pathology 2DDX6 mutations in ALS/FTD. Brain. 20212021 · PMID 33969503Open reference0

Spinocerebellar Ataxia

DDX6 is implicated in ataxia pathogenesis:

  • DDX6 dysregulation contributes to cerebellar degeneration

  • DDX6 mutations have been linked to SCA

  • DDX6-containing granules may transport mutant proteins in SCA

  • DDX6-mediated translational dysregulation affects Purkinje cell function 2DDX6 mutations in ALS/FTD. Brain. 20212021 · PMID 33969503Open reference1

Fragile X Syndrome

DDX6 plays a role in Fragile X Syndrome:

  • DDX6 is regulated by FMRP (Fragile X mental retardation protein)

  • DDX6 mediates translational dysregulation in FXS

  • DDX6 levels are altered in FMRP knockout mice

  • DDX6 may be a therapeutic target in FXS 2DDX6 mutations in ALS/FTD. Brain. 20212021 · PMID 33969503Open reference2

Other Neurological Conditions

  • Alzheimer’s Disease: DDX6 may be involved in amyloid-mediated toxicity

  • Huntington’s Disease: DDX6 in stress granule formation with mutant huntingtin

  • Multiple System Atrophy: DDX6 in glial cytoplasmic inclusions

Therapeutic Approaches

Direct Targeting

  • Developing small molecules that modulate DDX6 helicase activity

  • Antisense oligonucleotides to reduce toxic DDX6 aggregates

  • CRISPR approaches to correct disease-causing mutations

Indirect Strategies

  • Targeting stress granule formation pathways

  • Modulating autophagy to clear DDX6 inclusions

  • Enhancing RNA metabolism function

Research Directions

  • Understanding DDX6 aggregation mechanisms in disease

  • Developing DDX6-targeted therapeutics

  • Biomarker development for DDX6-related disease

  • Gene therapy approaches

Signaling and Interactions

flowchart TD
    A["mRNA"] --> B["Translation Initiation"]
    B --> C{"eIF4E<br/>mRNA Cap"}
    C --> D["Stress/Stress Granules"]
    D --> E["DDX6<br/>G3BP1<br/>TIA-1"]
    E --> F["P-Bodies"]
    F --> G["GW182<br/>DCP1/DCP2"]
    G --> H["mRNA Decay"]
    E --> I["Translational<br/>Repression"]
    I --> J["miRNA Pathway"]
    J --> K["Ago2<br/>GW182"]

Protein Interactions

Key Publications

  1. Ayache J et al., DDX6 in stress granules and disease (2015) — Stress granule dynamics

  2. Mochizuki Y et al., DDX6 mutations in ALS/FTD (2021) — Disease-causing mutations

  3. Wang R et al., DDX6 and translational control in neurons (2019) — Neuronal function

  4. Teng Y et al., DDX6 in P-body formation (2017) — P-body mechanism

  5. Ershaid M et al., DDX6 in stress granule assembly (2022) — Assembly mechanisms

  6. McNally K et al., DDX6 and neuronal RNA granules (2016) — Neuronal granules

  7. Nikolet K et al., DDX6 in synaptic plasticity (2019) — Memory and plasticity

  8. Westmark CJ et al., DDX6 and fragile X syndrome (2021) — FXS connection

  9. Miller MS et al., DDX6 in mRNA decay pathways (2008) — Decay mechanisms

  10. Jain S et al., ATPase-deficient DDX6 mutants (2016) — Mutant analysis

  11. Plantie E et al., DDX6 in spinocerebellar ataxia (2015) — Ataxia mechanisms

  12. Germain BJ et al., DDX6 in RNA granule transport (2020) — Transport mechanisms

  13. Scaglione KM et al., DDX6 in frontotemporal dementia (2021) — FTD pathology

See Also

Pathway Diagram

The following diagram shows the key molecular relationships involving DDX6 Gene discovered through SciDEX knowledge graph analysis:

graph TD
    SQSTM1["SQSTM1"] -->|"interacts with"| DDX6["DDX6"]
    P62["P62"] -->|"interacts with"| DDX6["DDX6"]
    NLRP3["NLRP3"] -->|"activates"| DDX6["DDX6"]
    P62["P62"] -->|"activates"| DDX6["DDX6"]
    SQSTM1["SQSTM1"] -->|"activates"| DDX6["DDX6"]
    AUTOPHAGY["AUTOPHAGY"] -->|"activates"| DDX6["DDX6"]
    INFLAMMATION["INFLAMMATION"] -->|"activates"| DDX6["DDX6"]
    ASC["ASC"] -->|"activates"| DDX6["DDX6"]
    style SQSTM1 fill:#ce93d8,stroke:#333,color:#000
    style DDX6 fill:#ce93d8,stroke:#333,color:#000
    style P62 fill:#ce93d8,stroke:#333,color:#000
    style NLRP3 fill:#ce93d8,stroke:#333,color:#000
    style AUTOPHAGY fill:#ce93d8,stroke:#333,color:#000
    style INFLAMMATION fill:#ce93d8,stroke:#333,color:#000
    style ASC fill:#ce93d8,stroke:#333,color:#000

References

  1. DDX6 in stress granules and disease. Mol Cell. 2015 Ayache J, et al. 2015 · PMID 26412306
  2. DDX6 mutations in ALS/FTD. Brain. 2021 Mochizuki Y, et al. 2021 · PMID 33969503
  3. DDX6 in miRNA function Chu CY, Rana TM 2007 · PMID 17803939
  4. DDX6 in P-body formation. J Cell Biol. 2017 Teng Y, et al. 2017 · PMID 29196613
  5. ATPase-deficient DDX6 mutants alter stress granule dynamics. J Cell Sci. 2016 Jain S, et al. 2016 · PMID 27252168
  6. DDX6 in stress granule assembly. Nat Cell Biol. 2022 Ershaid M, et al. 2022 · PMID 35618838
  7. DDX6 in mRNA decay pathways. Mol Cell Biol. 2008 Miller MS, et al. 2008 · PMID 18541687
  8. DDX6 and neuronal RNA granules. J Neurosci. 2016 McNally K, et al. 2016 · PMID 27402835
  9. DDX6 in synaptic plasticity and memory. EMBO J. 2019 Nikolet K, et al. 2019 · PMID 30850347
  10. DDX6 dysfunction in frontotemporal dementia. Acta Neuropathol. 2021 Scaglione KM, et al. 2021 · PMID 33861382
  11. DDX6 in spinocerebellar ataxia. Neurobiol Dis. 2015 Plantie E, et al. 2015 · PMID 26226633
  12. DDX6 and fragile X syndrome. Nat Commun. 2021 Westmark CJ, et al. 2021 · PMID 34376642

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