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Testing gene-gene interactions in the case-parents design

机译:在病例-父母设计中测试基因与基因的相互作用

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The case-parents design has been widely used to detect genetic associations as it can prevent spurious association that could occur in population-based designs. When examining the effect of an individual genetic locus on a disease, logistic regressions developed by conditioning on parental genotypes provide complete protection from spurious association caused by population stratification. However, when testing gene-gene interactions, it is unknown whether conditional logistic regressions are still robust. Here we evaluate the robustness and efficiency of several gene-gene interaction tests that are derived from conditional logistic regressions. We found that in the presence of SNP genotype correlation due to population stratification or linkage disequilibrium, tests with incorrectly specified main-genetic-effect models can lead to inflated type I error rates. We also found that a test with fully flexible main genetic effects always maintains correct test size and its robustness can be achieved with negligible sacrifice of its power. When testing gene-gene interactions is the focus, the test allowing fully flexible main effects is recommended to be used.
机译:病例-父母设计被广泛用于检测遗传关联,因为它可以防止基于人群的设计中可能发生的虚假关联。当检查单个遗传基因座对疾病的影响时,通过对父母基因型进行调节而发展出的逻辑回归可提供全面的保护,以防止因人口分层而造成的虚假关联。但是,在测试基因与基因的相互作用时,尚不清楚条件逻辑回归是否仍然有效。在这里,我们评估了从条件逻辑回归中得出的几种基因-基因相互作用测试的鲁棒性和效率。我们发现,由于种群分层或连锁不平衡而存在SNP基因型相关性时,使用错误指定的主遗传效应模型进行的测试可能会导致I型错误率上升。我们还发现,具有完全灵活的主要遗传效应的测试始终可以保持正确的测试大小,并且可以通过忽略其功能来实现其鲁棒性。当重点测试基因与基因的相互作用时,建议使用允许完全灵活的主要作用的测试。

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