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Cornelia de Lange syndrome mutations in SMC1A or SMC3 affect binding to DNA.

机译:SMC1A或SMC3中的Cornelia de Lange综合征突变会影响与DNA的结合。

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摘要

Cornelia de Lange syndrome (CdLS) is a clinically heterogeneous developmental disorder characterized by facial dysmorphia, upper limb malformations, growth and cognitive retardation. Mutations in the sister chromatid cohesion factor genes NIPBL, SMC1A and SMC3 are present in approximately 65% of CdLS patients. In addition to their canonical roles in chromosome segregation, the cohesin proteins are involved in other biological processes such as regulation of gene expression, DNA repair and maintenance of genome stability. To gain insights into the molecular basis of CdLS, we analyzed the affinity of mutated SMC1A and SMC3 hinge domains for DNA. Mutated hinge dimers bind DNA with higher affinity than wild-type proteins. SMC1A- and SMC3-mutated CdLS cell lines display genomic instability and sensitivity to ionizing radiation and interstrand crosslinking agents. We propose that SMC1A and SMC3 CdLS mutations affect the dynamic association between SMC proteins and DNA, providing new clues to the underlying molecular cause of CdLS.
机译:Cornelia de Lange综合征(CdLS)是一种临床异质性发育障碍,其特征是面部畸形,上肢畸形,生长和认知障碍。姐妹染色单体凝聚因子基因NIPBL,SMC1A和SMC3的突变存在于约65%的CdLS患者中。粘着蛋白除了在染色体分离中的典型作用外,还参与其他生物学过程,例如调节基因表达,DNA修复和维持基因组稳定性。为了深入了解CdLS的分子基础,我们分析了突变的SMC1A和SMC3铰链域对DNA的亲和力。突变的铰链二聚体以比野生型蛋白更高的亲和力结合DNA。 SMC1A和SMC3突变的CdLS细胞系显示出基因组不稳定和对电离辐射和链间交联剂的敏感性。我们建议SMC1A和SMC3 CdLS突变影响SMC蛋白和DNA之间的动态关联,为CdLS的潜在分子原因提供了新的线索。

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