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染色质重塑途径在平滑肌细胞分化中的作用及 p300 的重要作用证据。

Chromatin remodeling pathways in smooth muscle cell differentiation, and evidence for an integral role for p300.

机构信息

Division of Cardiovascular Medicine, Department of Medicine, Stanford University School of Medicine, Stanford, California, United States of America.

出版信息

PLoS One. 2010 Dec 13;5(12):e14301. doi: 10.1371/journal.pone.0014301.

Abstract

BACKGROUND

Phenotypic alteration of vascular smooth muscle cells (SMC) in response to injury or inflammation is an essential component of vascular disease. Evidence suggests that this process is dependent on epigenetic regulatory processes. P300, a histone acetyltransferase (HAT), activates crucial muscle-specific promoters in terminal (non-SMC) myocyte differentiation, and may be essential to SMC modulation as well.

RESULTS

We performed a subanalysis examining transcriptional time-course microarray data obtained using the A404 model of SMC differentiation. Numerous chromatin remodeling genes (up to 62% of such genes on our array platform) showed significant regulation during differentiation. Members of several chromatin-remodeling families demonstrated involvement, including factors instrumental in histone modification, chromatin assembly-disassembly and DNA silencing, suggesting complex, multi-level systemic epigenetic regulation. Further, trichostatin A, a histone deacetylase inhibitor, accelerated expression of SMC differentiation markers in this model. Ontology analysis indicated a high degree of p300 involvement in SMC differentiation, with 60.7% of the known p300 interactome showing significant expression changes. Knockdown of p300 expression accelerated SMC differentiation in A404 cells and human SMCs, while inhibition of p300 HAT activity blunted SMC differentiation. The results suggest a central but complex role for p300 in SMC phenotypic modulation.

CONCLUSIONS

Our results support the hypothesis that chromatin remodeling is important for SMC phenotypic switching, and detail wide-ranging involvement of several epigenetic modification families. Additionally, the transcriptional coactivator p300 may be partially degraded during SMC differentiation, leaving an activated subpopulation with increased HAT activity and SMC differentiation-gene specificity.

摘要

背景

血管平滑肌细胞(SMC)对损伤或炎症的表型改变是血管疾病的一个重要组成部分。有证据表明,这个过程依赖于表观遗传调控过程。P300 是一种组蛋白乙酰转移酶(HAT),它激活终末(非 SMC)肌细胞分化中关键的肌肉特异性启动子,并且对 SMC 调节也可能是必不可少的。

结果

我们进行了一项亚分析,检查了使用 A404SMC 分化模型获得的转录时间过程微阵列数据。在分化过程中,许多染色质重塑基因(我们的阵列平台上高达 62%的基因)表现出显著的调节。几个染色质重塑家族的成员表现出参与,包括在组蛋白修饰、染色质组装-解体和 DNA 沉默中起重要作用的因子,这表明存在复杂的、多层次的系统表观遗传调控。此外,组蛋白去乙酰化酶抑制剂曲古抑菌素 A 加速了该模型中 SMC 分化标志物的表达。本体分析表明,p300 参与 SMC 分化的程度很高,已知 p300 相互作用组中有 60.7%的基因表达发生显著变化。p300 表达的敲低加速了 A404 细胞和人 SMC 中的 SMC 分化,而 p300 HAT 活性的抑制则削弱了 SMC 分化。这些结果表明 p300 在 SMC 表型调节中起核心但复杂的作用。

结论

我们的结果支持染色质重塑对 SMC 表型转换很重要的假设,并详细描述了几个表观遗传修饰家族的广泛参与。此外,转录共激活因子 p300 可能在 SMC 分化过程中部分降解,留下一个激活的亚群,具有增加的 HAT 活性和 SMC 分化基因特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87c2/3001469/90380b7fb12a/pone.0014301.g001.jpg

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