首页> 美国卫生研究院文献>The Journal of Biological Chemistry >CDC5L promotes early chondrocyte differentiation and proliferation by modulating pre-mRNA splicing of SOX9 COL2A1 and WEE1
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CDC5L promotes early chondrocyte differentiation and proliferation by modulating pre-mRNA splicing of SOX9 COL2A1 and WEE1

机译:CDC5L通过调节SOX9COL2A1和WEE1的前mRNA剪接来促进软骨细胞分化和增殖

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摘要

Ossification of the posterior longitudinal ligament (OPLL) of the spine is a common pathological condition that causes intractable myelopathy and radiculopathy, mainly the result of an endochondral ossification-like process. Our previous genome-wide association study identified six susceptibility loci for OPLL, including the cell division cycle 5-like (CDC5L) gene region. Here, we found CDC5L to be expressed in type II collagen-producing chondrocyte-like fibroblasts in human OPLL specimens, as well as in differentiating ATDC5 chondrocytes. Cdc5l siRNA transfection in murine chondrocytes decreased the expression of the early chondrogenic genes Sox9 and Col2a1, diminished the cartilage matrix production, and enhanced the expression of parathyroid-hormone-related protein (a resting chondrocyte marker). We also showed that Cdc5l shRNA suppressed the growth of cultured murine embryonal metatarsal cartilage rudiments and that Cdc5l knockdown suppressed the growth of ATDC5 cells. Fluorescence-activated cell sorting analysis revealed that the G2/M cell cycle transition was blocked; our data showed that Cdc5l siRNA transfection enhanced expression of Wee1, an inhibitor of the G2/M transition. Cdc5l siRNA also decreased the pre-mRNA splicing efficiency of Sox9 and Col2a1 genes in both ATDC5 cells and primary chondrocytes; conversely, loss of Cdc5l resulted in enhanced splicing of Wee1 pre-mRNA. Finally, an RNA-binding protein immunoprecipitation assay revealed that Cdc5l bound directly to these target gene transcripts. Overall, we conclude that Cdc5l promotes both early chondrogenesis and cartilage growth and may play a role in the etiology of OPLL, at least in part by fine-tuning the pre-mRNA splicing of chondrogenic genes and Wee1, thus initiating the endochondral ossification process.
机译:脊柱的后纵韧带(OP1)的骨化是常见的病理状况,导致顽固的骨病变和无放射病变,主要是类骨化骨化型过程的结果。我们以前的基因组关联研究确定了OP11的六个易感性基因座,包括细胞分裂周期5样(CDC51)基因区域。在这里,我们发现CDC5L在人OPLL样本中产生II型胶原蛋白的软骨细胞样成纤维细胞,以及区分ATDC5软骨细胞。鼠软骨细胞中的CDC5L siRNA转染降低了早期软骨内基因SOX9和COL2A1的表达,减少了软骨基质的产生,并增强了甲状旁腺 - 激素相关蛋白的表达(休息的软骨细胞标记物)。我们还表明,CDC5L shRNA抑制了培养的鼠胚胎跖骨软骨粗糙度的生长,并且CDC5L敲低抑制了ATDC5细胞的生长。荧光激活的细胞分选分析显示G2 / M细胞周期转变被堵塞;我们的数据显示CDC5L siRNA转染增强了WEE1的表达,G2 / M转变的抑制剂。 CDC5L siRNA还降低了ATDC5细胞和原发性软骨细胞中SOX9和COL2A1基因的前mRNA剪接效率;相反,CDC51的损失导致WEE1前mRNA的剪接增强。最后,RNA结合蛋白免疫沉淀测定结果显示CDC51直接与这些靶基因转录物结合。总的来说,我们得出结论,CDC5L促进了早期的软骨发生和软骨生长,并且可能在OPL1的病因中发挥作用,至少部分地通过微调软骨发生基因和WEE1的前mRNA剪接,从而开始提高内核骨化过程。

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