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Mutation G827R in matriptase causing autosomal recessive ichthyosis with hypotrichosis yields an inactive protease
Antoine Désilets1, François Béliveau, Guillaume Vandal
1Department of Pharmacology, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, Québec J1H 5N4, Canada.
Abstract:
Matriptase is a member of the novel family of type II transmembrane serine proteases. It was recently shown that a rare genetic disorder, autosomal recessive ichthyosis with hypotrichosis, is caused by a mutation in the coding region of matriptase. However, the biochemical and functional consequences of the G827R mutation in the catalytic domain of the enzyme have not been reported. Here we expressed the G827R-matriptase mutant in bacterial cells and found that it did not undergo autocatalytic cleavage from its zymogen to its active form as did the wild-type matriptase. Enzymatic activity measurements showed that the G827R mutant was catalytically inactive. When expressed in HEK293 cells, G827R-matriptase remained inactive but was shed as a soluble form, suggesting that another protease cleaved the full-length mature form of matriptase. Molecular modeling based on the crystal structure of matriptase showed that replacing Gly(827) by Arg blocks access to the binding/catalytic cleft of the enzyme thereby preventing autocatalysis of the zymogen form. Our study, thus, provides direct evidence that the G827R mutation in patients with autosomal recessive ichthyosis with hypotrichosis leads to the expression of an inactive protease.
Insights
The G827R mutation causes an inactive matriptase (a protease) in patients with autosomal recessive ichthyosis with hypotrichosis, preventing essential enzyme activation and leading to disease.
Area of Science:
- Biochemistry
- Genetics
- Molecular Biology
Background:
- Matriptase is a type II transmembrane serine protease.
- A mutation in matriptase causes autosomal recessive ichthyosis with hypotrichosis.
- The functional impact of the G827R mutation is unknown.
Purpose of the Study:
- To investigate the biochemical and functional consequences of the G827R matriptase mutation.
Main Methods:
- Bacterial expression of G827R-matriptase mutant.
- Enzymatic activity assays.
- HEK293 cell expression.
- Molecular modeling.
Main Results:
- G827R-matriptase did not auto-cleave to its active form.
- The G827R mutant was catalytically inactive.
- G827R-matriptase was shed as a soluble, inactive form from cells.
- Molecular modeling indicated the mutation blocks the catalytic cleft.
Conclusions:
- The G827R mutation results in an inactive matriptase enzyme.
- This inactivity is due to blocked access to the catalytic cleft, preventing auto-activation.
- The findings provide direct evidence linking the G827R mutation to disease pathology.
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