后基因组时代的镰状细胞病:一种多基因表型的单基因疾病。

Genomics insights Pub Date : 2009-07-30
A Driss, K O Asare, J M Hibbert, B E Gee, T V Adamkiewicz, J K Stiles
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引用次数: 0

摘要

在发现镰状细胞病(SCD)的分子基础半个多世纪后,导致该疾病表型异质性的原因仍不清楚。这种异质性表现为不同的临床结果,如中风、血管闭塞发作、急性胸综合征、缺血性坏死、腿部溃疡、阴茎勃起和视网膜病变。这些结果不能单独用-珠蛋白基因的单一突变来解释,而可能归因于遗传修饰剂和环境影响。后人类基因组序列时代的最新进展为鉴定新的SCD基因修饰剂打开了大门。研究表明,SCD的表型似乎是由参与炎症、细胞间相互作用、氧化损伤和一氧化氮生物学调节剂的基因多态性调节的。发现与不同表型相关的基因将有助于了解疾病的生理病理,并有助于建立靶向治疗。然而,在断言基因修饰是所有SCD表型的原因时需要谨慎,因为还有其他因素,如人群的遗传背景、环境成分、社会经济学和心理学,可以在临床异质性中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Sickle Cell Disease in the Post Genomic Era: A Monogenic Disease with a Polygenic Phenotype.

Sickle Cell Disease in the Post Genomic Era: A Monogenic Disease with a Polygenic Phenotype.

More than half a century after the discovery of the molecular basis of Sickle Cell Disease (SCD), the causes of the phenotypic heterogeneity of the disease remain unclear. This heterogeneity manifests with different clinical outcomes such as stroke, vaso-occlusive episodes, acute chest syndrome, avascular necrosis, leg ulcers, priapism and retinopathy. These outcomes cannot be explained by the single mutation in the beta-globin gene alone but may be attributed to genetic modifiers and environmental effects. Recent advances in the post human genome sequence era have opened the door for the identification of novel genetic modifiers in SCD. Studies are showing that phenotypes of SCD seem to be modulated by polymorphisms in genes that are involved in inflammation, cell-cell interaction and modulators of oxidant injury and nitric oxide biology. The discovery of genes implicated in different phenotypes will help understanding of the physiopathology of the disease and aid in establishing targeted cures. However, caution is needed in asserting that genetic modifiers are the cause of all SCD phenotypes, because there are other factors such as genetic background of the population, environmental components, socio-economics and psychology that can play significant roles in the clinical heterogeneity.

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