Department of Genetics, The University of Texas, MD Anderson Cancer Center, Houston, TX 77030, USA.
Nucleic Acids Res. 2010 Oct;38(18):6018-28. doi: 10.1093/nar/gkq417. Epub 2010 May 19.
Mutations in SOX9, a gene essential for chondrocyte differentiation cause the human disease campomelic dysplasia (CD). To understand how SOX9 activates transcription, we characterized the DNA binding and cell-free transcription ability of wild-type SOX9 and a dimerization domain SOX9 mutant. Whereas formation of monomeric mutant SOX9-DNA complex increased linearly with increasing SOX9 concentrations, formation of a wild-type SOX9-DNA dimeric complex increased more slowly suggesting a more sigmoidal-type progression. Stability of SOX9-DNA complexes, however, was unaffected by the dimerization mutation. Both wild-type and mutant SOX9 activated transcription of a naked Col2a1 DNA template. However, after nucleosomal assembly, only wild-type and not the mutant was able to remodel chromatin and activate transcription of this template. Using a cell line, in which the Col2a1 vector was stably integrated, no differences were seen in the interactions of wild-type and mutant SOX9 with the chromatin of the Col2a1 vector using ChIP. However, the mutant was unable to activate transcription in agreement with in vitro results. We hypothesize that the SOX9 dimerization domain is necessary to remodel the Col2a1 chromatin in order to allow transcription to take place. These results further clarify the mechanism that accounts for CD in patients harboring SOX9 dimerization domain mutations.
SOX9 基因突变会导致人类疾病短肋多指畸形(CD)。为了了解 SOX9 如何激活转录,我们对野生型 SOX9 和二聚化结构域 SOX9 突变体的 DNA 结合和无细胞转录能力进行了表征。虽然单体突变型 SOX9-DNA 复合物的形成随 SOX9 浓度的增加呈线性增加,但野生型 SOX9-DNA 二聚体复合物的形成增加得更缓慢,表明其进展更呈 S 型。然而,二聚化突变并未影响 SOX9-DNA 复合物的稳定性。野生型和突变型 SOX9 均可激活裸露 Col2a1 DNA 模板的转录。然而,在核小体组装后,只有野生型而非突变型能够重塑染色质并激活该模板的转录。在使用稳定整合 Col2a1 载体的细胞系中,使用 ChIP 未发现野生型和突变型 SOX9 与 Col2a1 载体染色质之间的相互作用有差异。然而,突变型无法激活转录,这与体外结果一致。我们假设 SOX9 二聚化结构域对于重塑 Col2a1 染色质以允许转录发生是必需的。这些结果进一步阐明了携带 SOX9 二聚化结构域突变的患者发生 CD 的机制。