Yale Cardiovascular Genetics Program, Yale Cardiovascular Research Center, Department of Internal Medicine, Yale University School of Medicine, New Haven, Connecticut 06511, USA.
Hum Mutat. 2013 Sep;34(9):1221-5. doi: 10.1002/humu.22360. Epub 2013 Jun 18.
A rare mutation in LRP6 has been shown to underlie autosomal dominant coronary artery disease (CAD) and metabolic syndrome in an Iranian kindred. The prevalence and spectrum of LRP6 mutations in the disease population of the United States is not known. Two hundred white Americans with early onset familial CAD and metabolic syndrome and 2,000 healthy Northern European controls were screened for nonconservative mutations in LRP6. Three novel mutations were identified, which cosegregated with the metabolic traits in the kindreds of the affected subjects and none in the controls. All three mutations reside in the second propeller domain, which plays a critical role in ligand binding. Two of the mutations substituted highly conserved arginines in the second YWTD domain and the third substituted a conserved glycosylation site. The functional characterization of one of the variants showed that it impairs Wnt signaling and acts as a loss of function mutation.
LRP6 中的一种罕见突变已被证明是伊朗一个家族性常染色体显性遗传冠心病 (CAD) 和代谢综合征的基础。在美国,LRP6 突变在疾病人群中的患病率和谱尚不清楚。对 200 名患有早发性家族性 CAD 和代谢综合征的白种美国人以及 2000 名健康的北欧对照者进行了 LRP6 非保守突变筛查。鉴定出了三个新的突变,它们与受影响个体的家族中的代谢特征共分离,而在对照组中则没有。这三个突变都位于第二个螺旋桨结构域,该结构域在配体结合中起着至关重要的作用。其中两个突变取代了第二个 YWTD 结构域中的高度保守精氨酸,第三个突变取代了一个保守的糖基化位点。对其中一个变体的功能特征分析表明,它会损害 Wnt 信号转导,并作为功能丧失突变起作用。
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