Zengini Eleni, Finan Chris, Wilkinson J Mark
From the Dromokaiteio Psychiatric Hospital of Athens, Athens, Greece; Department of Human Metabolism, University of Sheffield, Sheffield; Wellcome Trust Sanger Institute, Hinxton, UK.E. Zengini, BSc, PhD Student, Dromokaiteio Psychiatric Hospital of Athens, and Department of Human Metabolism, University of Sheffield; C. Finan, PhD, Research Excellence Fellow, PhD, Wellcome Trust Sanger Institute; J.M. Wilkinson, FRCS (Tr&Orth), PhD, Professor of Orthopaedics, Department of Human Metabolism, University of Sheffield, Honorary Consultant Orthopaedic Surgeon, Sheffield Teaching Hospitals National Health Service Foundation Trust.
J Rheumatol. 2016 Feb;43(2):260-6. doi: 10.3899/jrheum.150710. Epub 2015 Dec 1.
Osteoarthritis (OA) is a complex disease that affects the whole joint, with multiple biological and environmental factors contributing to its development. The heritable component for primary OA accounts for ∼50% of susceptibility. So far, candidate gene studies and genome-wide association scans have established 18 OA-associated loci. These findings account for 11% of the heritability, explaining a rather small fraction of the genetic component. To further unravel the genetic architecture of OA, the field needs to facilitate more precise phenotypic definitions, high genome coverage, and large sample metaanalyses, expecting the identification of rare and low frequency variants with potentially higher penetrance, and more accurate methods for calculating phenotype-genotype correlation. Expression analysis, epigenetics, and investigation of interactions can also help clarify the implicated transcriptional regulatory pathways and provide insights into further novel pathogenic OA mechanisms leading to diagnostic biomarker identification and new, more focused therapeutic disease approaches.
骨关节炎(OA)是一种影响整个关节的复杂疾病,多种生物和环境因素促成其发展。原发性OA的遗传成分约占易感性的50%。到目前为止,候选基因研究和全基因组关联扫描已经确定了18个与OA相关的基因座。这些发现占遗传性的11%,仅解释了相当小一部分的遗传成分。为了进一步阐明OA的遗传结构,该领域需要促进更精确的表型定义、高基因组覆盖率和大样本荟萃分析,期望识别出具有潜在更高外显率的罕见和低频变异,以及计算表型-基因型相关性的更准确方法。表达分析、表观遗传学和相互作用研究也有助于阐明相关的转录调控途径,并为导致诊断生物标志物识别和新的、更有针对性的治疗疾病方法的进一步新型致病OA机制提供见解。