Renal tubular dysgenesis of genetic origin: genes and variants
Renal tubular dysgenesis of genetic origin is linked to 4 analyzed proteins (ACE, AGTR1, REN and AGT). 2 DNA variants are known to cause it; 301 more are uncertain, and 0 of those already look disease-causing on computable evidence.
Last updated 2026-09-30. Research information, not medical advice.
Genes linked to Renal tubular dysgenesis of genetic origin
ACE: Angiotensin-converting enzyme
A membrane-associated enzyme that removes terminal dipeptides from hormones and signaling peptides, including angiotensin I and bradykinin. By generating angiotensin II and inactivating vasodilators, it helps regulate blood pressure, fluid balance, and aspects of nervous-system signaling.
2 disease-causing and 186 uncertain variants in ACE are linked to Renal tubular dysgenesis of genetic origin.
AGTR1: Type-1 angiotensin II receptor
Its activation by angiotensin II promotes vasoconstriction, aldosterone release, sodium retention, and vascular remodeling. Excessive signaling contributes to hypertension and cardiovascular disease, and the pathway is therapeutically blocked by angiotensin-receptor blockers.
0 disease-causing and 35 uncertain variants in AGTR1 are linked to Renal tubular dysgenesis of genetic origin.
REN: Renin
It initiates the renin-angiotensin cascade by cleaving angiotensinogen, thereby controlling blood pressure, sodium balance, and extracellular fluid volume. Pathogenic variants can cause renal tubular dysgenesis or rare inherited tubulointerstitial kidney disease depending on their effect on renin production.
0 disease-causing and 32 uncertain variants in REN are linked to Renal tubular dysgenesis of genetic origin.
AGT: Angiotensinogen
It provides the precursor from which renin generates angiotensin I, placing it at the start of the renin-angiotensin system that regulates blood pressure and fluid balance. Rare variants can cause renal tubular dysgenesis, while common variation has been studied for effects on blood pressure.
0 disease-causing and 48 uncertain variants in AGT are linked to Renal tubular dysgenesis of genetic origin.
Known disease-causing variants in Renal tubular dysgenesis of genetic origin
| Variant | Position | Protein part | Clinical label |
|---|---|---|---|
| ACE M1T | 1 | Disease-causing (★★) | |
| ACE M1I | 1 | Disease-causing (★) |
Diseases related to Renal tubular dysgenesis of genetic origin
- Renal tubular dysgenesis, also linked to ACE, AGT, AGTR1 and REN
- Type 2 diabetes mellitus, also linked to ACE and AGTR1
- Diabetes mellitus, also linked to ACE and AGTR1
- Myocardial infarction, also linked to ACE and AGTR1
- Alzheimer disease, also linked to ACE
- Familial juvenile hyperuricemic nephropathy type 1, also linked to REN
- Kidney disorder, also linked to AGTR1
- Microvascular complications of diabetes, susceptibility to, 3, also linked to ACE
- Chronic kidney disease, also linked to AGTR1
- Hemorrhage, intracerebral, susceptibility to, also linked to ACE
Frequently asked questions
Which genes are linked to Renal tubular dysgenesis of genetic origin?
In CATVariant, Renal tubular dysgenesis of genetic origin is linked to 4 analyzed proteins: ACE (Angiotensin-converting enzyme), AGTR1 (Type-1 angiotensin II receptor), REN (Renin) and AGT (Angiotensinogen).
How many genetic variants are linked to Renal tubular dysgenesis of genetic origin?
313 variants: 2 are classified as disease-causing (pathogenic or likely pathogenic) in ClinVar and 301 are of uncertain significance or have conflicting reports.
Which uncertain variants in Renal tubular dysgenesis of genetic origin look disease-causing?
None of the uncertain variants currently reaches the likely-pathogenic range on computable evidence alone.
About this data
Variant–disease links come from ClinVar, Open Targets and UniProt, pooled from the latest public CATVariant analysis of each human protein. Evidence scores use the ACMG/AMP Bayesian points scale with computable criteria only (position among known disease variants, rarity in gnomAD, calibrated predictors, deep mutational scanning); there is no family or patient data, so they prioritise variants for expert review and never classify them.
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