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Spatacsin (SPG11) (SPG11)

Target
SPG11
Molecular classification
Other (large cytoplasmic protein involved in vesicle trafficking/autophagy-lysosome pathway)
01

Overview

SPG11 encodes spatacsin, a large, evolutionarily conserved cytoplasmic protein highly expressed in the nervous system whose precise biochemical function remains incompletely defined.[5][4] Spatacsin participates in late endosome/lysosome biology, cooperating with SPG15 to recruit the AP-5 adaptor complex to late endosomes/lysosomes, and has been linked to autophagy-lysosomal pathway integrity and vesicle trafficking.[3][4] Human biallelic loss-of-function variants in SPG11 cause spastic paraplegia type 11, the most frequent complex autosomal recessive HSP, typically featuring progressive spastic paraparesis, cognitive decline, peripheral neuropathy, and a characteristic thin corpus callosum on MRI.[9][4] Transcriptomic analyses in Spg11−/− mouse brain tissues further implicate dysregulation of inflammation, RNA metabolism, neuronal/neurite development, proteostasis pathways, and cell-cycle programs, supporting a role for spatacsin in neurodevelopmental and neurodegenerative processes.[2] Although SPG11 has genetic and mechanistic importance in disease, it is not an established pharmacological target and no drugs currently act directly on spatacsin.[4][5]

Other names
KIAA1840FLJ21439Spastic paraplegia 11 (autosomal recessive)SPATACSINSPTCS_HUMAN
02

Biological functions

Vesicle/endolysosomal trafficking and tethering (with SPG15 and AP-5 at late endosomes/lysosomes)Autophagy-lysosomal machinery maintenanceNeuronal and neurite development/axon maintenancePotential roles in RNA metabolism and mitochondrial function (inferred from transcriptomic and prior studies)
03

Disease associations

Neurodegenerative disease (Hereditary spastic paraplegia type 11 with thin corpus callosum)Amyotrophic lateral sclerosis spectrum (early-onset, autosomal recessive ALS5 reported in SPG11)Peripheral neuropathies, including Charcot–Marie–Tooth associations reported in genetics resources
04

Safety considerations

Therapeutic challenge: loss-of-function disease in a large, ubiquitously expressed neuronal protein with broad roles in autophagy/endolysosomal pathways, raising delivery and on-target perturbation risks for gene/protein replacement strategies
05

Biomarkers

Thin corpus callosum on brain MRI in SPG11-HSPSPG11 pathogenic variants (gene-level diagnostic biomarker)

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