Department of Pediatrics, The Children's Hospital of Philadelphia, 34th Street and Civic Center Boulevard, Philadelphia, PA 19104, USA.
Hum Mutat. 2010 May;31(5):594-601. doi: 10.1002/humu.21231.
Mutations in the Notch pathway ligand Jagged1 (JAG1) cause Alagille syndrome (AGS), as well as cardiac defects in seemingly nonsyndromic individuals. To estimate the frequency of JAG1 mutations in cases with right-sided cardiac defects not otherwise diagnosed with AGS, we screened 94 cases with tetralogy of Fallot (TOF) and 50 with pulmonic stenosis/peripheral pulmonary stenosis (PS/PPS) or pulmonary valve atresia with intact ventricular septum (PA) for mutations. Sequence changes were identified in three TOF and three PS/PPS/PA patients, that were not present in 100 controls. We identified one frameshift and two missense mutations in the TOF cases, and one frameshift and two missense mutations in cases with PS/PPS/PA. The four missense mutations were assayed for their effect on protein localization, posttranslational modification, and ability to activate Notch signaling. The missense mutants displayed heterogeneous behavior in these assays, some with complete haploinsufficiency, suggesting that there are additional modifiers leading to organ specific features. We identified functionally significant mutations in 2% (2/94) of TOF patients and 4% (2/50) of PS/PPS/PA patients. Patients with right-sided cardiac defects should be carefully screened for features of AGS or a family history of cardiac defects that might suggest the presence of a JAG1 mutation.
Jagged1(JAG1)基因突变导致 Notch 通路配体 Alagille 综合征(AGS),以及似乎非综合征个体的心脏缺陷。为了估计无 AGS 其他诊断的右心缺陷病例中 JAG1 突变的频率,我们对 94 例法洛四联症(TOF)和 50 例肺动脉瓣狭窄/外周肺动脉狭窄(PS/PPS)或完整室间隔的肺动脉瓣闭锁(PA)患者进行了突变筛查。在三个 TOF 和三个 PS/PPS/PA 患者中发现了序列变化,这些变化在 100 个对照中不存在。我们在 TOF 病例中发现了一个移码突变和两个错义突变,在 PS/PPS/PA 病例中发现了一个移码突变和两个错义突变。对四个错义突变进行了蛋白定位、翻译后修饰和激活 Notch 信号的能力的检测。在这些检测中,错义突变体表现出不同的行为,有些完全表现为半合子不足,这表明存在其他修饰因子导致器官特异性特征。我们在 2%(2/94)的 TOF 患者和 4%(2/50)的 PS/PPS/PA 患者中发现了具有功能意义的突变。有右心缺陷的患者应仔细筛查 AGS 的特征或心脏缺陷的家族史,这可能提示存在 JAG1 突变。