TY - JOUR
T1 - Biallelic TMEM72 variants in patients with a nephronophthisis-like phenotype
AU - Claus, Laura R
AU - Snoek, Rozemarijn
AU - Faber, Siebren
AU - Roskothen-Shevchuk, Aurelius J C
AU - Sendino Garví, Elena
AU - Peters, Edith D J
AU - Savelberg, Sanne M C
AU - Duran, Karen
AU - van der Zwaag, Bert
AU - Nguyen, Tri Q
AU - Broekhuizen, Roel
AU - Brummelhuis, Walter J
AU - Rookmaaker, Maarten
AU - van der Veen, Suzanne W
AU - Elferink, Martin G
AU - Karras, Alexandre
AU - Raymond, Laure
AU - Mousseaux, Cyril
AU - Sadeghi-Alavijeh, Omid
AU - Sayer, John A
AU - Olinger, Eric
AU - Neatu, Ruxandra
AU - Klämbt, Verena
AU - Stokman, Marijn F
AU - Knoers, Nine V A M
AU - Tessadori, Federico
AU - Gale, Daniel P
AU - Boldt, Karsten
AU - Ueffing, Marius
AU - Slaats, Gisela G
AU - Roepman, Ronald
AU - Hildebrandt, Friedhelm
AU - Mesnard, Laurent
AU - van Haaften, Gijs
AU - van Eerde, Albertien M
N1 - Publisher Copyright:
© 2025 S. Karger AG, Basel
PY - 2026/4
Y1 - 2026/4
N2 - Abstract – Introduction: Nephronophthisis (NPHP) is an autosomal recessive kidney disease resulting mainly from primary cilium defects, with unspecific and variable symptoms that can progress to kidney failure needing replacement therapy at a young age. Currently, up to 64% of likely NPHP cases can be diagnosed by assessing known genes. Therefore, there is a need to gain more insight in what genes can cause this disease. Methods: In a diagnostic setting, we performed broad genetic testing in patients with advanced kidney disease. We carried out in silico and in vitro analyses for TMEM72, including immunohistochemistry and affinity proteomics, and in vivo experiments to further interpret our findings. Results: We identified biallelic TMEM72 variants in 9 patients from six families with a phenotype suggestive for NPHP. Five families presented with kidney failure at a (young) adult age. One family had a different phenotype with prenatal onset of kidney failure and neurological symptoms. The phenotypes of the patients correspond to TMEM72 expression mainly in the kidney. In silico analyses indicate that homozygous loss-of-function variants are likely not tolerated in TMEM72. Immunohistochemistry staining of kidney biopsies revealed altered localization and expression of TMEM72 in cases compared to controls. In human-derived tubuloids, we showed that TMEM72 localizes to the cilium. Furthermore, using an affinity proteomics approach, we found an association of TMEM72 and ciliary function, more specifically in selective ciliary cholesterol transport. Conclusion: We present the first genetic evidence, underlined by immunohistochemistry and protein binding assays, linking TMEM72 variants to kidney disease and ciliary function. We conclude that TMEM72 is a candidate gene for NPHP. Future work is needed to further characterize TMEM72 variants and unravel its disease mechanism.
AB - Abstract – Introduction: Nephronophthisis (NPHP) is an autosomal recessive kidney disease resulting mainly from primary cilium defects, with unspecific and variable symptoms that can progress to kidney failure needing replacement therapy at a young age. Currently, up to 64% of likely NPHP cases can be diagnosed by assessing known genes. Therefore, there is a need to gain more insight in what genes can cause this disease. Methods: In a diagnostic setting, we performed broad genetic testing in patients with advanced kidney disease. We carried out in silico and in vitro analyses for TMEM72, including immunohistochemistry and affinity proteomics, and in vivo experiments to further interpret our findings. Results: We identified biallelic TMEM72 variants in 9 patients from six families with a phenotype suggestive for NPHP. Five families presented with kidney failure at a (young) adult age. One family had a different phenotype with prenatal onset of kidney failure and neurological symptoms. The phenotypes of the patients correspond to TMEM72 expression mainly in the kidney. In silico analyses indicate that homozygous loss-of-function variants are likely not tolerated in TMEM72. Immunohistochemistry staining of kidney biopsies revealed altered localization and expression of TMEM72 in cases compared to controls. In human-derived tubuloids, we showed that TMEM72 localizes to the cilium. Furthermore, using an affinity proteomics approach, we found an association of TMEM72 and ciliary function, more specifically in selective ciliary cholesterol transport. Conclusion: We present the first genetic evidence, underlined by immunohistochemistry and protein binding assays, linking TMEM72 variants to kidney disease and ciliary function. We conclude that TMEM72 is a candidate gene for NPHP. Future work is needed to further characterize TMEM72 variants and unravel its disease mechanism.
KW - Ciliopathy
KW - Kidney failure needing replacement therapy
KW - Monogenic kidney disease
KW - Nephronophthisis
KW - TMEM72
UR - https://www.scopus.com/pages/publications/105028456482
U2 - 10.1159/000549598
DO - 10.1159/000549598
M3 - Article
C2 - 41308066
SN - 0028-2766
VL - 150
SP - 210
EP - 227
JO - Nephron
JF - Nephron
IS - 4
ER -