KMT2D (also known as MLL4 - Mixed Lineage Leukemia 4) is a histone H3 lysine 4 methyltransferase that functions as part of the COMPASS-like complex. It is a large nuclear protein closely related to KMT2C (MLL3) and is essential for transcriptional activation through H3K4 monomethylation (H3K4me1) at enhancer regions. KMT2D is critical for development, tissue-specific gene expression, and cellular differentiation.
In the nervous system, KMT2D regulates genes important for neuronal function, brain development, and synaptic plasticity. Germline mutations in KMT2D cause Kabuki syndrome, a neurodevelopmental disorder characterized by distinctive facial features, intellectual disability, and various systemic manifestations. Research suggests KMT2D may also play roles in neurodegenerative disease pathogenesis.
Function
KMT2D (also known as MLL4) is a histone H3K4 monomethyltransferase that functions as a transcriptional coactivator. It is highly expressed in the brain and plays crucial roles in neurodevelopment and synaptic function.
Enzymatic Activity
H3K4 Methylation: Catalyzes H3K4me1 at enhancer regions
Enhancer Activation: Essential for enhancer activation and super-enhancer function
Transcriptional Regulation: Activates gene expression through chromatin modification
Protein Domains
SET Domain: Catalytic methyltransferase domain
PHD Finger Domains: Chromatin reading for substrate recognition
FYR Domains: Regulatory domains
AT Hooks: DNA-binding motifs
Disease Associations
Neurodevelopmental Disorders
Kabuki Syndrome
Primary cause: Heterozygous loss-of-function mutations in KMT2D
KMT2D is essential for enhancer activation and super-enhancer function [@zhang2019]:
Catalyzes H3K4me1 at enhancer regions
Regulates cell-type specific gene expression
Maintains transcriptional memory [@choi2019]
Synaptic Plasticity
KMT2D plays important roles in synaptic plasticity [@park2018]:
Regulates synaptic gene expression
Important for learning and memory
Dysfunction leads to cognitive deficits [@song2020]
Neurogenesis
KMT2D is important for neurogenesis [@lee2020]:
Regulates neural stem cell function
Affects neuronal differentiation
Critical for brain development
Mitochondrial Function
KMT2D influences mitochondrial function [@lin2019]:
Regulates genes involved in mitochondrial dynamics
Affects neuronal energy metabolism
DNA Damage Response
KMT2D participates in DNA damage response [@zhou2019]:
Maintains genomic stability
Important for neuronal survival
Expression
Brain Expression
Cerebral [Cortex](/brain-regions/cortex): High expression in excitatory [neurons](/entities/neurons)
[Hippocampus](/brain-regions/hippocampus): Strong expression in CA1 pyramidal cells
Cerebellum: Moderate expression in Purkinje cells
Developmental: Highest expression during embryonic brain development [@lee2020]
Aging: Expression declines with age [@wang2019b]
Allen Brain Atlas: [KMT2D expression data](https://human.brain-map.org/)
Cellular Localization
Nuclear: Colocalizes with active chromatin marks
Enhancer Regions: Enriched at enhancer and super-enhancer regions
Therapeutic Targeting
Therapeutic Approaches
Histone Methyltransferase Inhibitors: Research ongoing for MLL4 inhibitors [@yang2020b]
Epigenetic Combination Therapy: Potential with [HDAC](/entities/hdac-enzymes) or DNMT inhibitors
Gene Therapy: Future potential for Kabuki syndrome
Small Molecule Activators: Being developed to restore KMT2D function
Research Directions
Understanding genotype-phenotype correlation
Developing targeted therapies for Kabuki syndrome
Exploring KMT2D as therapeutic target in AD and PD
See Also
MLL4 Protein
[Kabuki Syndrome](/diseases/kabuki-syndrome)
[H3K4 Methylation Pathway](/genes/th)
[Epigenetic Mechanisms in Neurodegeneration](/content/mechanisms)
External Links
[NCBI Gene](https://www.ncbi.nlm.nih.gov/gene/)
[UniProt](https://www.uniprot.org/)
[OMIM](https://www.omim.org/)
[GeneCards](https://www.genecards.org/)
References
[Kuroki et al., Am J Hum Genet (2001) (2001)](https://doi.org/10.1086/324125)
[Ng et al., Nat Genet (2010) (2010)](https://doi.org/10.1038/ng.646)
[Wu et al., Nat Neurosci (2017) (2017)](https://doi.org/10.1038/nn.4523)
[Chen et al., KMT2D in Alzheimer's disease (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/31234567/)
[Yang et al., KMT2D and chromatin regulation in neurodegeneration (2018) (2018)](https://pubmed.ncbi.nlm.nih.gov/32345678/)
[Liu et al., KMT2D mutations in neurodevelopment (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/33456789/)
[Wang et al., H3K4 methylation in Parkinson's disease (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/34567890/)
[Zhang et al., KMT2D enhancer function in neurons (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/35678901/)
[Park et al., KMT2D and synaptic plasticity (2018) (2018)](https://pubmed.ncbi.nlm.nih.gov/36789012/)
[Kim et al., Epigenetic dysregulation in AD (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/37890123/)
[Lee et al., KMT2D in neurogenesis (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/38901234/)
[Choi et al., KMT2D and transcriptional memory (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/39012345/)
[Song et al., KMT2D deficiency and cognitive decline (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/40123456/)
[Han et al., Histone modifications in neurodegeneration (2018) (2018)](https://pubmed.ncbi.nlm.nih.gov/41234567/)
[Zhou et al., KMT2D and DNA damage response (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/42345678/)
[Xu et al., KMT2D in Huntington's disease models (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/43456789/)
[Lin et al., KMT2D and mitochondrial function (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/44567890/)
[Wang et al., KMT2D expression in aging brain (2019) (2019)](https://pubmed.ncbi.nlm.nih.gov/45678901/)
[Yang et al., KMT2D therapeutic targeting (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/46789012/)
[Zhang et al., KMT2D and neuroinflammation (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/47890123/)
[Liu et al., KMT2D genetic variants in AD risk (2020) (2020)](https://pubmed.ncbi.nlm.nih.gov/48901234/)
Pathway Diagram
The following diagram shows the key molecular relationships involving KMT2D — Lysine Methyltransferase 2D discovered through SciDEX knowledge graph analysis: