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Published on: October 26, 2020
Association of MYH9 rs3752462 and rs5756168 Polymorphisms With Transplanted Kidney Artery Stenosis
J Pazik1, Z Lewandowski2, M Oldak3
1Department of Transplantation Medicine, Nephrology, and Internal Diseases, Medical University of Warsaw, Warsaw, Poland.
Insights
Genetic variants in the MYH9 gene are linked to transplant renal artery stenosis (TRAS) risk. Specific alleles, rs5756168 TT and rs3752462 CC, significantly alter TRAS risk in kidney transplant recipients.
Area of Science:
- Nephrology
- Genetics
- Transplantation Immunology
Background:
- The MYH9 gene encodes myosin nonmuscle heavy chain type IIA, implicated in kidney disease.
- MYH9 allelic variants are associated with reduced kidney function and end-stage kidney disease in Caucasian populations.
- Myosin nonmuscle heavy chain type IIA is expressed in developing and injured kidney and vascular structures.
Purpose of the Study:
- To investigate the association between MYH9 gene risk variants and transplant renal artery stenosis (TRAS).
- To evaluate specific MYH9 allelic variants (rs4821480, rs4821481, rs3752462, rs11089788, rs136211, rs5756168, rs2032487, and rs2239784) with TRAS.
- To determine if genetic predisposition influences the development of TRAS in kidney transplant recipients.
Main Methods:
- Genotyping of 295 white deceased-donor kidney transplant recipients and their donors using custom Taqman assays.
- Statistical analysis including Kaplan-Meier estimates, log-rank tests, and proportional hazard Cox models.
- Assessment of TRAS defined as >50% lumen reduction in the renal artery.
Main Results:
- Recipients with the rs5756168 TT genotype showed a reduced risk of TRAS (HR, 0.31; P < .009).
- Kidneys with the rs3752462 CC genotype exhibited an increased risk of TRAS (HR, 2.54; P < .047).
- Multivariate analysis confirmed these findings, with rs3752462 CC increasing TRAS risk 10.9-fold and rs5756168 TT decreasing it 3.45-fold.
Conclusions:
- This study is the first to identify a genetic predisposition to transplant renal artery stenosis.
- Specific MYH9 gene variants (rs5756168 and rs3752462) are significantly associated with TRAS risk.
- Donor death due to intracranial bleeding or trauma also independently reduced TRAS risk.
Abstract:
Allelic variants of the MYH9 gene, encoding myosin nonmuscle heavy chain type IIA, have been shown to correlate with diminished glomerular filtration rates and end-stage kidney disease in individuals of Caucasian ancestry. Myosin nonmuscle heavy chain type IIA is expressed during development as well as in injured vessels and kidney structures. We hypothesized that MYH9 risk variants may correlate with kidney artery injury and dysfunctional healing, such as transplant renal artery stenosis (TRAS). Our study aimed at evaluating the association of MYH9 risk allelic variants (rs4821480, rs4821481, rs3752462, rs11089788, rs136211, rs5756168, rs2032487, and rs2239784) with TRAS, defined as >50% renal artery lumen reduction. Genotyping was performed with the use of custom Taqman genotyping assays on DNA samples (n = 295) from white deceased-donor kidney transplant recipients and genomic DNA from the corresponding donors. Statistical analysis was performed with the use of Kaplan-Meier estimates, log-rank tests, and proportional hazard Cox models. Recipients carrying TT in rs5756168 experienced diminished risk of TRAS (hazard ratio [HR], 0.31; P < .009), whereas organs carrying CC in rs3752462 were exposed to excessive TRAS risk (HR, 2.54; P < .047). In multivariate stepwise analysis TRAS was 10.9-fold increased in kidneys originating from rs3752462 CC, whereas the risk was decreased 3.45-fold (adjusted HR, 0.29) in recipients carrying rs5756168 TT (P < .007 and P < .033, respectively). Intracranial bleeding or trauma compared with other mechanisms of donor death diminished TRAS risk by 87% and 91%, respectively (P < .030 and P < .017). Our study is the first to identify genetic predisposition to transplant renal artery stenosis.
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