Recessive CHRM5 variant as a potential cause of neurogenic bladder

Author:

Schneider Sophia1ORCID,Schierbaum Luca1,Burger Wessel A. C.2,Seltzsam Steve1,Wang Chunyan1,Zheng Bixia1,Wu Chen‐Han Wilfred134,Nakayama Makiko1,Connaughton Dervla M.1,Mann Nina1,Shalaby Mohamed A.5,Kari Jameela A.5,ElDesoky Sherif5,Tasic Velibor6,Eid Loai A.7,Shril Shirlee1,Thal David M.2,Hildebrandt Friedhelm1ORCID

Affiliation:

1. Division of Nephrology, Department of Medicine, Boston Children's Hospital Harvard Medical School Boston Massachusetts USA

2. Drug Discovery Biology Monash Institute of Pharmaceutical Sciences, Monash University Parkville Victoria Australia

3. Division of Genetics and Genomics, Department of Medicine, Boston Children's Hospital Harvard Medical School Boston Massachusetts USA

4. Department of Urology and Genetics and Genome Sciences Case Western Reserve University Hospital Cleveland Ohio USA

5. Department of Pediatrics, Pediatric Nephrology Unit, Pediatric Nephrology Center of Excellence, Faculty of Medicine King Abdulaziz University Hospital, King Abdulaziz University Jeddah Kingdom of Saudi Arabia

6. Pediatric Nephrology, University Children's Hospital University of Skopje Medical Faculty Skopje North Macedonia

7. Pediatric Nephrology Department Dubai Hospital Dubai UAE

Abstract

AbstractNeurogenic bladder is caused by disruption of neuronal pathways regulating bladder relaxation and contraction. In severe cases, neurogenic bladder can lead to vesicoureteral reflux, hydroureter, and chronic kidney disease. These complications overlap with manifestations of congenital anomalies of the kidney and urinary tract (CAKUT). To identify novel monogenic causes of neurogenic bladder, we applied exome sequencing (ES) to our cohort of families with CAKUT. By ES, we have identified a homozygous missense variant (p.Gln184Arg) in CHRM5 (cholinergic receptor, muscarinic, 5) in a patient with neurogenic bladder and secondary complications of CAKUT. CHRM5 codes for a seven transmembrane‐spanning G‐protein‐coupled muscarinic acetylcholine receptor. CHRM5 is shown to be expressed in murine and human bladder walls and is reported to cause bladder overactivity in Chrm5 knockout mice. We investigated CHRM5 as a potential novel candidate gene for neurogenic bladder with secondary complications of CAKUT. CHRM5 is similar to the cholinergic bladder neuron receptor CHRNA3, which Mann et al. published as the first monogenic cause of neurogenic bladder. However, functional in vitro studies did not reveal evidence to strengthen the status as a candidate gene. Discovering additional families with CHRM5 variants could help to further assess the genes' candidate status.

Funder

ACMG Foundation for Genetic and Genomic Medicine

Health Research Board

International Pediatric Research Foundation

National Human Genome Research Institute

National Institutes of Health

Publisher

Wiley

Subject

Genetics (clinical),Genetics

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