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Myosin Vb uncoupling from RAB8A and RAB11A elicits microvillus inclusion disease
Abstract:
Microvillus inclusion disease (MVID) is a severe form of congenital diarrhea that arises from inactivating mutations in the gene encoding myosin Vb (MYO5B). We have examined the association of mutations in MYO5B and disruption of microvillar assembly and polarity in enterocytes. Stable MYO5B knockdown (MYO5B-KD) in CaCo2-BBE cells elicited loss of microvilli, alterations in junctional claudins, and disruption of apical and basolateral trafficking; however, no microvillus inclusions were observed in MYO5B-KD cells. Expression of WT MYO5B in MYO5B-KD cells restored microvilli; however, expression of MYO5B-P660L, a MVID-associated mutation found within Navajo populations, did not rescue the MYO5B-KD phenotype but induced formation of microvillus inclusions. Microvilli establishment required interaction between RAB8A and MYO5B, while loss of the interaction between RAB11A and MYO5B induced microvillus inclusions. Using surface biotinylation and dual immunofluorescence staining in MYO5B-KD cells expressing mutant forms of MYO5B, we observed that early microvillus inclusions were positive for the sorting marker SNX18 and derived from apical membrane internalization. In patients with MVID, MYO5B-P660L results in global changes in polarity at the villus tips that could account for deficits in apical absorption, loss of microvilli, aberrant junctions, and losses in transcellular ion transport pathways, likely leading to the MVID clinical phenotype of neonatal secretory diarrhea.
Insights
Microvillus inclusion disease (MVID) is caused by MYO5B gene mutations. A specific mutation, MYO5B-P660L, disrupts enterocyte polarity and causes microvillus inclusions, leading to neonatal secretory diarrhea.
Area of Science:
- Cell Biology
- Genetics
- Gastroenterology
Background:
- Microvillus inclusion disease (MVID) is a severe congenital diarrhea.
- MVID results from inactivating mutations in the myosin Vb (MYO5B) gene.
Purpose of the Study:
- To investigate the association between MYO5B mutations and microvillar assembly/polarity disruption in enterocytes.
- To understand the role of MYO5B in microvillus formation and the pathogenesis of MVID.
Main Methods:
- Stable MYO5B knockdown (MYO5B-KD) in CaCo2-BBE cells.
- Expression of wild-type (WT) and mutant MYO5B (MYO5B-P660L) in MYO5B-KD cells.
- Surface biotinylation and dual immunofluorescence staining.
Main Results:
- MYO5B knockdown caused loss of microvilli and disrupted apical/basolateral trafficking.
- MYO5B-P660L mutation induced microvillus inclusions, unlike WT MYO5B which restored microvilli.
- Microvilli formation requires RAB8A-MYO5B interaction; loss of RAB11A-MYO5B interaction induced inclusions.
- Inclusions originated from apical membrane internalization, marked by SNX18.
Conclusions:
- MYO5B mutations disrupt enterocyte polarity and microvillus structure, causing MVID.
- The MYO5B-P660L mutation leads to global polarity changes at villus tips.
- These changes explain MVID symptoms like diarrhea, malabsorption, and ion transport defects.
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