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使用针对血液细胞开发的激光微照射技术评估表观遗传机制和 DNA 双链断裂修复。

Assessment of epigenetic mechanisms and DNA double-strand break repair using laser micro-irradiation technique developed for hematological cells.

机构信息

Department of Oncological Sciences, Huntsman Cancer Institute, University of Utah School of Medicine, Salt Lake City, UT, USA.

Department of Radiation Oncology, Huntsman Cancer Institute, University of Utah School of Medicine, Salt Lake City, UT, USA.

出版信息

EBioMedicine. 2019 May;43:138-149. doi: 10.1016/j.ebiom.2019.03.083. Epub 2019 Apr 16.

Abstract

BACKGROUND

Certain tumors rely heavily on their DNA repair capability to survive the DNA damage induced by chemotherapeutic agents. Therefore, it is important to monitor the dynamics of DNA repair in patient samples during the course of their treatment, in order to determine whether a particular drug regimen perturbs the DNA repair networks in cancer cells and provides therapeutic benefits. Quantitative measurement of proteins and/or their posttranslational modification(s) at DNA double strand breaks (DSBs) induced by laser microirradiation provides an applicable diagnostic approach to examine DNA repair and its dynamics. However, its use is restricted to adherent cell lines and not employed in suspension tumor cells that include the many hematological malignancies.

METHODS

Here, we report the development of an assay to laser micro-irradiate and quantitatively measure DNA repair transactions at DSB sites in normal mononuclear cells and a variety of suspension leukemia and lymphoma cells including primary patient samples.

FINDINGS

We show that global changes in the H3K27me3-ac switch modulated by inhibitors of Class I HDACs, EZH2 methyltransferase and (or) H3K27me3 demethylases do not reflect the dynamic changes in H3K27me3 that occur at double-strand break sites during DNA repair.

INTERPRETATION

Results from our mechanistic studies and proof-of-principle data with patient samples together show the effectiveness of using the modified micro-laser-based assay to examine DNA repair directly in suspension cancer cells, and has important clinical implications by serving as a valuable tool to assess drug efficacies in hematological cancer cells that grow in suspension.

摘要

背景

某些肿瘤严重依赖其 DNA 修复能力来存活化疗药物诱导的 DNA 损伤。因此,在治疗过程中监测患者样本中 DNA 修复的动态变化非常重要,以确定特定的药物方案是否扰乱癌细胞中的 DNA 修复网络并提供治疗益处。通过激光微照射定量测量蛋白质及其在 DNA 双链断裂(DSB)处的翻译后修饰(s)提供了一种可行的诊断方法来检查 DNA 修复及其动态变化。然而,它仅适用于贴壁细胞系,而不适用于包括许多血液恶性肿瘤在内的悬浮肿瘤细胞。

方法

在这里,我们报告了一种测定法的开发,用于激光微照射和定量测量正常单核细胞和各种悬浮白血病和淋巴瘤细胞(包括原始患者样本)中 DSB 位点的 DNA 修复交易。

发现

我们表明,I 类组蛋白去乙酰化酶抑制剂、EZH2 甲基转移酶和(或)H3K27me3 去甲基酶调节的 H3K27me3 开关的全局变化不能反映 DNA 修复过程中双链断裂位点处 H3K27me3 的动态变化。

解释

我们的机制研究结果和患者样本的初步原理数据共同表明,使用改良的基于微激光的测定法直接在悬浮癌细胞中检查 DNA 修复的有效性,并且通过作为评估悬浮生长的血液癌细胞药物疗效的有价值工具具有重要的临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/721a/6562062/4e7ce9d9adc3/gr1.jpg

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