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HMGA1基因下调对于染色质组成和允许肌源性分化的基因表达谱至关重要。

HMGA1 down-regulation is crucial for chromatin composition and a gene expression profile permitting myogenic differentiation.

作者信息

Brocher Jan, Vogel Benjamin, Hock Robert

机构信息

Department of Biological Sciences, National University of Singapore, 14 Science Drive 4, Block S1A, Level 6, 117543 Singapore.

出版信息

BMC Cell Biol. 2010 Aug 11;11:64. doi: 10.1186/1471-2121-11-64.

Abstract

BACKGROUND

High mobility group A (HMGA) proteins regulate gene transcription through architectural modulation of chromatin and the formation of multi-protein complexes on promoter/enhancer regions. Differential expression of HMGA variants has been found to be important for distinct differentiation processes and deregulated expression was linked to several disorders. Here we used mouse C2C12 myoblasts and C2C12 cells stably over-expressing HMGA1a-eGFP to study the impact of deregulated HMGA1 expression levels on cellular differentiation.

RESULTS

We found that induction of the myogenic or osteogenic program of C2C12 cells caused an immediate down-regulation of HMGA1. In contrast to wild type C2C12 cells, an engineered cell line with stable over-expression of HMGA1a-eGFP failed to differentiate into myotubes. Immunolocalization studies demonstrated that sustained HMGA1a-eGFP expression prevented myotube formation and chromatin reorganization that normally accompanies differentiation. Western Blot analyses showed that elevated HMGA1a-eGFP levels affected chromatin composition through either down-regulation of histone H1 or premature expression of MeCP2. RT-PCR analyses further revealed that sustained HMGA1a expression also affected myogenic gene expression and caused either down-regulation of genes such as MyoD, myogenin, Igf1, Igf2, Igfbp1-3 or up-regulation of the transcriptional repressor Msx1. Interestingly, siRNA experiments demonstrated that knock-down of HMGA1a was required and sufficient to reactivate the myogenic program in induced HMGA1a over-expressing cells.

CONCLUSIONS

Our data demonstrate that HMGA1 down-regulation after induction is required to initiate the myogenic program in C2C12 cells. Sustained HMGA1a expression after induction prevents expression of key myogenic factors. This may be due to specific gene regulation and/or global effects on chromatin. Our data further corroborate that altered HMGA1 levels influence the expression of other chromatin proteins. Thus, HMGA1 is able to establish a specific chromatin composition. This work contributes to the understanding of how differential HMGA1 expression is involved in chromatin organization during cellular differentiation processes and it may help to comprehend effects of HMGA1 over-expression occurring in malign or benign tumours.

摘要

背景

高迁移率族A(HMGA)蛋白通过对染色质的结构调节以及在启动子/增强子区域形成多蛋白复合物来调控基因转录。已发现HMGA变体的差异表达对于不同的分化过程很重要,且表达失调与多种疾病相关。在此,我们使用小鼠C2C12成肌细胞和稳定过表达HMGA1a-eGFP的C2C12细胞,来研究HMGA1表达水平失调对细胞分化的影响。

结果

我们发现,诱导C2C12细胞的成肌或成骨程序会导致HMGA1立即下调。与野生型C2C12细胞不同,稳定过表达HMGA1a-eGFP的工程细胞系无法分化为肌管。免疫定位研究表明,持续的HMGA1a-eGFP表达会阻止肌管形成以及通常伴随分化的染色质重组。蛋白质免疫印迹分析显示,升高的HMGA1a-eGFP水平通过下调组蛋白H1或过早表达MeCP2影响染色质组成。逆转录聚合酶链反应分析进一步表明,持续的HMGA1a表达也会影响成肌基因表达,并导致诸如MyoD、肌细胞生成素、Igf1、Igf2、Igfbp1 - 3等基因下调,或转录抑制因子Msx1上调。有趣的是,小干扰RNA实验表明,敲低HMGA1a对于在诱导过表达HMGA1a的细胞中重新激活成肌程序是必要且充分的。

结论

我们的数据表明,诱导后HMGA1下调是启动C2C12细胞成肌程序所必需的。诱导后持续的HMGA1a表达会阻止关键成肌因子的表达。这可能是由于特定的基因调控和/或对染色质的整体影响。我们的数据进一步证实,HMGA1水平的改变会影响其他染色质蛋白的表达。因此,HMGA1能够建立特定的染色质组成。这项工作有助于理解在细胞分化过程中HMGA1差异表达如何参与染色质组织,并且可能有助于理解在恶性或良性肿瘤中发生的HMGA1过表达的影响。

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