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TMEM16E/ANO5 mutations related to bone dysplasia or muscular dystrophy cause opposite effects on lipid scrambling

Academic Article
Publication Date:
2020
abstract:
Mutations in the human TMEM16E/ANO5 gene are causative for gnathodiaphyseal dysplasia (GDD), a rare bone malformation and fragility disorder, and for two types of muscular dystrophy (MD). Previous studies have demonstrated that TMEM16E/ANO5 is a Ca2+-activated phospholipid scramblase and that the mutation c.1538C>T (p.Thr513Ile) causing GDD leads to a gain-of-function phenotype. Here, using established HEK293-based functional assays, we investigated the effects of MD-related and further GDD-related amino acid exchanges on TMEM16E/ANO5 function in the same expression system. These experiments also revealed that the gradual changes in HEK293 cell morphology observed upon expression of TMEM16E/ANO5(GDD) mutants are a consequence of aberrant protein activity. Our results collectively demonstrate that, on the level of protein function, MD mutations are associated to loss-of-function and GDD mutations to gain-of-function phenotypes, confirming conjectures made on the basis of inheritance modes.
Iris type:
01.01 Articolo in rivista
Keywords:
anoctamin; gnathodiaphyseal dysplasia; phosphatidylserine; phospholipid scramblase; TMEM16; GNATHODIAPHYSEAL DYSPLASIA; ANOCTAMIN 5; CHANNEL; PROTEIN; FAMILY; PREVALENCE; COHORT
List of contributors:
DI ZANNI, Eleonora; Picco, Cristiana; Boccaccio, ANNA ELISABETTA; SCHOLZ STARKE, JOACHIM JOHANNES; Gradogna, Antonella
Authors of the University:
BOCCACCIO ANNA ELISABETTA
GRADOGNA ANTONELLA
PICCO CRISTIANA
SCHOLZ STARKE JOACHIM JOHANNES
Handle:
https://iris.cnr.it/handle/20.500.14243/381301
Published in:
HUMAN MUTATION
Journal
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