4.6 Article

Meta-analysis of genome-wide linkage scans for renal function traits

期刊

NEPHROLOGY DIALYSIS TRANSPLANTATION
卷 27, 期 2, 页码 647-656

出版社

OXFORD UNIV PRESS
DOI: 10.1093/ndt/gfr255

关键词

albuminuria; chronic kidney disease; glomerular filtration rate; linkage scans; meta-analysis

资金

  1. National Institutes of Health [DK066992, R01 DK053591, R01 HL56266, R01 DK070941, DK084149, N01-HG-65403]
  2. Tufts Clinical and Translational Science Institute [1 UL1 RR025752-02]
  3. National Heart, Lung and Blood Institute's Framingham Heart Study [N01-HC-25195]
  4. General Clinical Research Center of the Wake Forest University School of Medicine [M01 RR07122]
  5. HyperGEN study [HL54471, HL54472, HL54473, HL54495, HL54496, HL54497, HL54509, HL54515, HL55673]
  6. NIDDK [U01DK57292, U01DK57249, U01DK57295, U01DK57298, U01DK57300, U01DK57303, U01DK57304, U01DK57329]
  7. National Center for Research Resources for the General Clinical Research Center: Case Western Reserve University [M01-RR-000080]
  8. National Center for Research Resources for the General Clinical Research Center: Wake Forest University [M01-RR-07122]
  9. National Center for Research Resources for the General Clinical Research Center: Harbor-UCLA Medical Center [M01-RR-00425]
  10. National Center for Research Resources for the General Clinical Research Center: College of Medicine-University of California Irvine [M01-RR-00827-29]
  11. National Center for Research Resources for the General Clinical Research Center: University of New Mexico HSC [M01-RR-00997]
  12. National Center for Research Resources for the General Clinical Research Center: [M01-RR-01346]
  13. [R01-AG18734]

向作者/读者索取更多资源

Several genome scans have explored the linkage of chronic kidney disease phenotypes to chromosomic regions with disparate results. Genome scan meta-analysis (GSMA) is a quantitative method to synthesize linkage results from independent studies and assess their concordance. We searched PubMed to identify genome linkage analyses of renal function traits in humans, such as estimated glomerular filtration rate (GFR), albuminuria, serum creatinine concentration and creatinine clearance. We contacted authors for numerical data and extracted information from individual studies. We applied the GSMA nonparametric approach to combine results across 14 linkage studies for GFR, 11 linkage studies for albumin creatinine ratio, 11 linkage studies for serum creatinine and 4 linkage studies for creatinine clearance. No chromosomal region reached genome-wide statistical significance in the main analysis which included all scans under each phenotype; however, regions on Chromosomes 7, 10 and 16 reached suggestive significance for linkage to two or more phenotypes. Subgroup analyses by disease status or ethnicity did not yield additional information. While heterogeneity across populations, methodologies and study designs likely explain this lack of agreement, it is possible that linkage scan methodologies lack the resolution for investigating complex traits. Combining family-based linkage studies with genome-wide association studies may be a powerful approach to detect private mutations contributing to complex renal phenotypes.

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