Smyk Marta, Akdemir Kadir Caner, Stankiewicz Paweł
a Department of Medical Genetics , Institute of Mother and Child , Warsaw , Poland.
b Genomic Medicine Department , MD Anderson Cancer Center , Houston , TX , USA.
Nucleus. 2017 Mar 4;8(2):182-187. doi: 10.1080/19491034.2017.1279776. Epub 2017 Jan 13.
Evolutionary conserved transcription factor SOX9, encoded by the dosage sensitive SOX9 gene on chromosome 17q24.3, plays an important role in development of multiple organs, including bones and testes. Heterozygous point mutations and genomic copy-number variant (CNV) deletions involving SOX9 have been reported in patients with campomelic dysplasia (CD), a skeletal malformation syndrome often associated with male-to-female sex reversal. Balanced and unbalanced structural genomic variants with breakpoints mapping up to 1.3 Mb up- and downstream to SOX9 have been described in patients with milder phenotypes, including acampomelic campomelic dysplasia, sex reversal, and Pierre Robin sequence. Based on the localization of breakpoints of genomic rearrangements causing different phenotypes, 5 genomic intervals mapping upstream to SOX9 have been defined. We have analyzed the publically available database of high-throughput chromosome conformation capture (Hi-C) in multiple cell lines in the genomic regions flanking SOX9. Consistent with the literature data, chromatin domain boundaries in the SOX9 locus exhibit conservation across species and remain largely constant across multiple cell types. Interestingly, we have found that chromatin folding domains in the SOX9 locus associate with the genomic intervals harboring real and putative regulatory elements of SOX9, implicating that variation in intra-domain interactions may be critical for dynamic regulation of SOX9 expression in a cell type-specific fashion. We propose that tissue-specific enhancers for other transcription factor genes may similarly utilize chromatin folding sub-domains in gene regulation.
进化保守转录因子SOX9由位于17q24.3染色体上的剂量敏感基因SOX9编码,在包括骨骼和睾丸在内的多个器官的发育中起重要作用。在患有弯肢侏儒症(CD)的患者中,已报道了涉及SOX9的杂合点突变和基因组拷贝数变异(CNV)缺失,弯肢侏儒症是一种骨骼畸形综合征,常伴有男性向女性的性反转。在具有较轻表型的患者中,包括无肢弯肢侏儒症、性反转和皮埃尔·罗宾序列,已经描述了断点定位在SOX9上下游达1.3 Mb的平衡和不平衡结构基因组变异。基于导致不同表型的基因组重排断点的定位,已定义了5个位于SOX9上游的基因组区间。我们分析了SOX9侧翼基因组区域中多个细胞系的高通量染色体构象捕获(Hi-C)公共可用数据库。与文献数据一致,SOX9基因座中的染色质结构域边界在物种间具有保守性,并且在多种细胞类型中基本保持不变。有趣的是,我们发现SOX9基因座中的染色质折叠结构域与包含SOX9真实和假定调控元件的基因组区间相关联,这意味着域内相互作用的变化可能对以细胞类型特异性方式动态调控SOX9表达至关重要。我们提出,其他转录因子基因的组织特异性增强子可能同样利用染色质折叠亚结构域进行基因调控。