Schaid D J, Buetow K, Weeks D E, Wijsman E, Guo S W, Ott J, Dahl C
Department of Health Sciences Research and Medical Genetics, Mayo Clinic/Mayo Foundation, Rochester, MN 55905, USA.
J Natl Cancer Inst Monogr. 1999(26):1-16. doi: 10.1093/oxfordjournals.jncimonographs.a024219.
Determining the genetic causes of cancers has immense public health benefits, ranging from prevention to earlier detection and treatment of disease. Although a number of cancer susceptibility genes have been successfully identified, design and analytic issues remain that challenge the current paradigm of gene discovery. Some examples are the definition and measurement of cancer phenotype, the use of intermediate end points, the choice of sample (e.g., affected relative pairs versus large extended pedigrees), the choice of analytic method [e.g., parametric logarithm of the odds (LOD) score method versus model-free methods], and the influence of gene-environment interaction on linkage analysis. Furthermore, association methods, based on either the traditional case-control study design or family-based controls, are popular choices to evaluate candidate genes or screen for linkage disequilibrium. Finally, the study design and analytic methods for gene discovery are determined to some extent by what genomic technology is feasible within the laboratory. Many of the main issues related to gene discovery, as well as trends in genomic technology that will impact on gene discovery, are discussed from the perspective of their strengths and weaknesses, pointing to areas in need of further work.
确定癌症的遗传病因具有巨大的公共卫生效益,涵盖从疾病预防到早期检测和治疗等诸多方面。尽管已经成功鉴定出一些癌症易感基因,但设计和分析方面的问题依然存在,这些问题对当前的基因发现模式构成了挑战。一些例子包括癌症表型的定义和测量、中间终点的使用、样本的选择(例如,患病亲属对与大型扩展家系)、分析方法的选择[例如,参数化优势对数(LOD)评分法与无模型方法],以及基因 - 环境相互作用对连锁分析的影响。此外,基于传统病例对照研究设计或家系对照的关联方法,是评估候选基因或筛查连锁不平衡的常用选择。最后,基因发现的研究设计和分析方法在一定程度上取决于实验室中可行的基因组技术。本文从优缺点的角度讨论了许多与基因发现相关的主要问题,以及将对基因发现产生影响的基因组技术趋势,指出了需要进一步开展工作的领域。