It is most likely that the genetic basis for the majority of common, familial diseases involves multiple genes, probably with interacting effects. Developing statistical- genetic study designs and methods of analysis to map and characterize genes for these disorders is the major challenge facing quantitative geneticists today. It is also critical to the success of the human genome project. This grant proposal is a competitive renewal requesting an additional five years of support to continue research in this important area. Specifically, it is proposed to (1) develop robust methods of linkage analysis in pedigrees, using Identity by descent for all pairs of affected relatives, based on marker information on all relatives and allowing for non-independence of pairs; (2) compare this robust method with conventional lod score analysis for different complex iodes of inheritance; different study designs (constellations of affected relatives) will also be contrasted for their power; (3) develop methods for simultaneous linkage analysis of hundreds of markers spanning the entire genome based on breeding experiments from animal models; (4) develop analogous methods for human linkage studies, based on simultaneous analysis of hundreds of marker loci spanning the genome; (5) examine the feasibility of marker association studies in recently admixed populations in a general genome search as compared with conventional linkage analysis; and (6) apply these methods to various data sets currently proposed for collection. These studies will combine both theoretical developments and computer simulations. The results from these analyses should have an enormous impact on methods for designing and analyzing genetic studies of common, complex familial diseases, and thus eventually to their full understanding.

Agency
National Institute of Health (NIH)
Institute
National Human Genome Research Institute (NHGRI)
Type
Research Project (R01)
Project #
5R01HG000348-09
Application #
2208763
Study Section
Genome Study Section (GNM)
Project Start
1988-09-30
Project End
1998-08-31
Budget Start
1995-09-01
Budget End
1998-08-31
Support Year
9
Fiscal Year
1995
Total Cost
Indirect Cost
Name
Stanford University
Department
Genetics
Type
Schools of Medicine
DUNS #
800771545
City
Stanford
State
CA
Country
United States
Zip Code
94305
Spiker, D; Lotspeich, L J; Dimiceli, S et al. (2001) Birth order effects on nonverbal IQ scores in autism multiplex families. J Autism Dev Disord 31:449-60
Klein, C; Vieregge, P; Hagenah, J et al. (1999) Search for the PARK3 founder haplotype in a large cohort of patients with Parkinson's disease from northern Germany. Ann Hum Genet 63:285-91
Teng, J; Risch, N (1999) The relative power of family-based and case-control designs for linkage disequilibrium studies of complex human diseases. II. Individual genotyping. Genome Res 9:234-41
Klein, C; Ozelius, L J; Hagenah, J et al. (1998) Search for a founder mutation in idiopathic focal dystonia from Northern Germany. Am J Hum Genet 63:1777-82
Klein, C; Brin, M F; de Leon, D et al. (1998) De novo mutations (GAG deletion) in the DYT1 gene in two non-Jewish patients with early-onset dystonia. Hum Mol Genet 7:1133-6
Risch, N; Teng, J (1998) The relative power of family-based and case-control designs for linkage disequilibrium studies of complex human diseases I. DNA pooling. Genome Res 8:1273-88
Andrews, C; Devlin, B; Perlin, M et al. (1997) Binning clones by hybridization with complex probes: statistical refinement of an inner product mapping method. Genomics 41:141-54
Tishkoff, S A; Dietzsch, E; Speed, W et al. (1996) Global patterns of linkage disequilibrium at the CD4 locus and modern human origins. Science 271:1380-7
Hauser, E R; Boehnke, M; Guo, S W et al. (1996) Affected-sib-pair interval mapping and exclusion for complex genetic traits: sampling considerations. Genet Epidemiol 13:117-37
Wildenauer, D B; Hallmayer, J; Schwab, S G et al. (1996) Searching for susceptibility genes in schizophrenia by genetic linkage analysis. Cold Spring Harb Symp Quant Biol 61:845-50

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