Vrouwe Mischa G, Elghalbzouri-Maghrani Elhaam, Meijers Matty, Schouten Peter, Godthelp Barbara C, Bhuiyan Zahurul A, Redeker Egbert J, Mannens Marcel M, Mullenders Leon H F, Pastink Albert, Darroudi Firouz
Department of Toxicogenetics, Leiden University Medical Center, Postal Zone S-6-P, PO Box 9600, 2300 RC, Leiden.
Hum Mol Genet. 2007 Jun 15;16(12):1478-87. doi: 10.1093/hmg/ddm098. Epub 2007 Apr 27.
Cornelia de Lange syndrome (CdLS) is a rare dominantly inherited multisystem disorder affecting both physical and mental development. Heterozygous mutations in the NIPBL gene were found in about half of CdLS cases. Scc2, the fungal ortholog of the NIPBL gene product, is essential for establishing sister chromatid cohesion. In yeast, the absence of cohesion leads to chromosome mis-segregation and defective repair of DNA double-strand breaks. To evaluate possible DNA repair defects in CdLS cells, we characterized the cellular responses to DNA-damaging agents. We show that cells derived from CdLS patients, both with and without detectable NIPBL mutations, have an increased sensitivity for mitomycin C (MMC). Exposure of CdLS fibroblast and B-lymphoblastoid cells to MMC leads to enhanced cell killing and reduced proliferation and, in the case of primary fibroblasts, an increased number of chromosomal aberrations. After X-ray exposure increased numbers of chromosomal aberrations were also detected, but only in cells irradiated in the G(2)-phase of the cell cycle when repair of double-strand breaks is dependent on the establishment of sister chromatid cohesion. Repair at the G(1) stage is not affected in CdLS cells. Our studies indicate that CdLS cells have a reduced capacity to tolerate DNA damage, presumably as a result of reduced DNA repair through homologous recombination.
科妮莉亚·德朗热综合征(CdLS)是一种罕见的常染色体显性遗传多系统疾病,会影响身体和智力发育。约半数CdLS病例中发现NIPBL基因存在杂合突变。NIPBL基因产物的真菌同源物Scc2对于建立姐妹染色单体黏连至关重要。在酵母中,缺乏黏连会导致染色体错误分离以及DNA双链断裂修复缺陷。为了评估CdLS细胞中可能存在的DNA修复缺陷,我们对细胞对DNA损伤剂的反应进行了特征分析。我们发现,来自CdLS患者的细胞,无论是否检测到NIPBL突变,对丝裂霉素C(MMC)的敏感性均增加。CdLS成纤维细胞和B淋巴母细胞暴露于MMC会导致细胞杀伤增强、增殖减少,对于原代成纤维细胞而言,还会导致染色体畸变数量增加。X射线照射后也检测到染色体畸变数量增加,但仅在细胞周期的G(2)期照射的细胞中出现这种情况,此时双链断裂的修复依赖于姐妹染色单体黏连的建立。CdLS细胞在G(1)期的修复不受影响。我们的研究表明,CdLS细胞耐受DNA损伤的能力降低,这可能是由于同源重组导致的DNA修复减少所致。