Pathogenic heterozygous TRPM7 variants and hypomagnesemia with developmental delay

Author:

Bosman Willem1,Butler Kameryn M2,Chang Caitlin A3,Ganapathi Mythily4,Guzman Edwin5,Latta Femke1,Chung Wendy K6,Claverie-Martin Felix7,Davis Jessica M2,Hoenderop Joost G J1ORCID,de Baaij Jeroen H F1ORCID

Affiliation:

1. Department of Medical BioSciences, Radboudumc , Nijmegen , The Netherlands

2. Greenwood Genetic Center , Greenwood, SC , USA

3. Department of Medical Genetics, BC Women and Children's Hospital , Vancouver, British Columbia , Canada

4. Department of Pathology and Cell Biology, Columbia University Irving Medical Center , New York, NY , USA

5. Department of Pediatrics, Columbia University Irving Medical Center , New York, NY , USA

6. Department of Pediatrics, Boston Children's Hospital and Harvard Medical School , Boston, MA , USA

7. Unidad de Investigación, RenalTube Group, Hospital Universitario Nuestra Señora de Candelaria , Santa Cruz de Tenerife , Spain

Abstract

ABSTRACT Background Heterozygous variants in Transient receptor potential melastatin type 7 (TRPM7), encoding an essential and ubiquitously expressed cation channel, may cause hypomagnesemia, but current evidence is insufficient to draw definite conclusions and it is unclear whether any other phenotypes can occur. Methods Individuals with unexplained hypomagnesemia underwent whole-exome sequencing which identified TRPM7 variants. Pathogenicity of the identified variants was assessed by combining phenotypic, functional and in silico analyses. Results We report three new heterozygous missense variants in TRPM7 (p.Met1000Thr, p.Gly1046Arg, p.Leu1081Arg) in individuals with hypomagnesemia. Strikingly, autism spectrum disorder and developmental delay, mainly affecting speech and motor skills, was observed in all three individuals, while two out of three also presented with seizures. The three variants are predicted to be severely damaging by in silico prediction tools and structural modeling. Furthermore, these variants result in a clear loss-of-function of TRPM7-mediated magnesium uptake in vitro, while not affecting TRPM7 expression or insertion into the plasma membrane. Conclusions This study provides additional evidence for the association between heterozygous TRPM7 variants and hypomagnesemia and adds developmental delay to the phenotypic spectrum of TRPM7-related disorders. Considering that the TRPM7 gene is relatively tolerant to loss-of-function variants, future research should aim to unravel by what mechanisms specific heterozygous TRPM7 variants can cause disease.

Funder

IMAGEN

Dutch Kidney Foundation

European Research Council

Netherlands Organization for Scientific Research

Publisher

Oxford University Press (OUP)

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