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Published on: March 12, 2013
Kidins220 deficiency causes ventriculomegaly via SNX27-retromer-dependent AQP4 degradation
Ana Del Puerto1,2,3, Julia Pose-Utrilla1,2, Ana Simón-García1,2
1Instituto de Investigaciones Biomédicas "Alberto Sols", Consejo Superior de Investigaciones Científicas-Universidad Autónoma de Madrid (CSIC-UAM), Madrid, Spain.
Insights
Kinase D interacting substrate of 220 kDa (KIDINS220) regulates cerebrospinal fluid (CSF) homeostasis. Its deficiency causes ventriculomegaly by disrupting the SNX27-retromer-aquaporin-4 (AQP4) pathway, leading to AQP4 degradation.
Area of Science:
- Neuroscience
- Molecular Biology
- Pathology
Background:
- Ventriculomegaly, often seen in neurological disorders, involves increased cerebrospinal fluid (CSF) and is poorly understood.
- Kinase D interacting substrate of 220 kDa (KIDINS220) is linked to conditions like schizophrenia and SINO syndrome, which feature ventriculomegaly.
- The molecular mechanisms driving cerebral ventricular enlargement remain largely unknown.
Purpose of the Study:
- To investigate the role of KIDINS220 in regulating CSF homeostasis and its connection to ventriculomegaly.
- To identify the molecular pathway involving KIDINS220, SNX27-retromer, and aquaporin-4 (AQP4) in the context of brain ventricular enlargement.
Main Methods:
- Analysis of KIDINS220 and AQP4 expression in human idiopathic normal pressure hydrocephalus (iNPH) patients.
- Phenotypic characterization of Kidins220 deficient mice, including assessment of ventriculomegaly and CSF homeostasis.
- Investigation of the SNX27-retromer complex's role in AQP4 trafficking and degradation using molecular biology techniques in astrocytes.
Main Results:
- KIDINS220 and AQP4 are downregulated in the ventricular ependymal lining of iNPH patients.
- Kidins220 deficient mice exhibit ventriculomegaly, disrupted water balance, and reduced AQP4 levels.
- Kidins220 deficiency leads to downregulation of the SNX27-retromer, causing lysosomal degradation of AQP4, which is a novel cargo of this complex.
Conclusions:
- The KIDINS220-SNX27-retromer-AQP4 pathway is a critical regulator of CSF homeostasis and brain ventricular size.
- Dysregulation of this pathway contributes to human ventriculomegaly.
- This pathway represents a potential therapeutic target for treating ventriculomegaly and related neurological disorders.
Abstract:
Several psychiatric, neurologic and neurodegenerative disorders present increased brain ventricles volume, being hydrocephalus the disease with the major manifestation of ventriculomegaly caused by the accumulation of high amounts of cerebrospinal fluid (CSF). The molecules and pathomechanisms underlying cerebral ventricular enlargement are widely unknown. Kinase D interacting substrate of 220 kDa (KIDINS220) gene has been recently associated with schizophrenia and with a novel syndrome characterized by spastic paraplegia, intellectual disability, nystagmus and obesity (SINO syndrome), diseases frequently occurring with ventriculomegaly. Here we show that Kidins220, a transmembrane protein effector of various key neuronal signalling pathways, is a critical regulator of CSF homeostasis. We observe that both KIDINS220 and the water channel aquaporin-4 (AQP4) are markedly downregulated at the ventricular ependymal lining of idiopathic normal pressure hydrocephalus (iNPH) patients. We also find that Kidins220 deficient mice develop ventriculomegaly accompanied by water dyshomeostasis and loss of AQP4 in the brain ventricular ependymal layer and astrocytes. Kidins220 is a known cargo of the SNX27-retromer, a complex that redirects endocytosed plasma membrane proteins (cargos) back to the cell surface, thus avoiding their targeting to lysosomes for degradation. Mechanistically, we show that AQP4 is a novel cargo of the SNX27-retromer and that Kidins220 deficiency promotes a striking and unexpected downregulation of the SNX27-retromer that results in AQP4 lysosomal degradation. Accordingly, SNX27 silencing decreases AQP4 levels in wild-type astrocytes whereas SNX27 overexpression restores AQP4 content in Kidins220 deficient astrocytes. Together our data suggest that the KIDINS220-SNX27-retromer-AQP4 pathway is involved in human ventriculomegaly and open novel therapeutic perspectives.
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