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对小细胞肺癌细胞系的全基因组 DNA 甲基化分析表明了潜在的化疗靶点。

Epigenome-wide DNA methylation analysis of small cell lung cancer cell lines suggests potential chemotherapy targets.

机构信息

Biometric Research Program, Division of Cancer Treatment and Diagnosis, National Cancer Institute, NIH, 9609 Medical Center Dr., Rockville, MD, 20850, USA.

Molecular Pharmacology Group, Leidos Biomedical Research, Inc., Frederick National Laboratory for Cancer Research, Frederick, MD, 21702, USA.

出版信息

Clin Epigenetics. 2020 Jun 25;12(1):93. doi: 10.1186/s13148-020-00876-8.

Abstract

BACKGROUND

Small cell lung cancer (SCLC) is an aggressive neuroendocrine lung cancer. SCLC progression and treatment resistance involve epigenetic processes. However, links between SCLC DNA methylation and drug response remain unclear. We performed an epigenome-wide study of 66 human SCLC cell lines using the Illumina Infinium MethylationEPIC BeadChip array. Correlations of SCLC DNA methylation and gene expression with in vitro response to 526 antitumor agents were examined.

RESULTS

We found multiple significant correlations between DNA methylation and chemosensitivity. A potentially important association was observed for TREX1, which encodes the 3' exonuclease I that serves as a STING antagonist in the regulation of a cytosolic DNA-sensing pathway. Increased methylation and low expression of TREX1 were associated with the sensitivity to Aurora kinase inhibitors AZD-1152, SCH-1473759, SNS-314, and TAK-901; the CDK inhibitor R-547; the Vertex ATR inhibitor Cpd 45; and the mitotic spindle disruptor vinorelbine. Compared with cell lines of other cancer types, TREX1 had low mRNA expression and increased upstream region methylation in SCLC, suggesting a possible relationship with SCLC sensitivity to Aurora kinase inhibitors. We also identified multiple additional correlations indicative of potential mechanisms of chemosensitivity. Methylation of the 3'UTR of CEP350 and MLPH, involved in centrosome machinery and microtubule tracking, respectively, was associated with response to Aurora kinase inhibitors and other agents. EPAS1 methylation was associated with response to Aurora kinase inhibitors, a PLK-1 inhibitor and a Bcl-2 inhibitor. KDM1A methylation was associated with PLK-1 inhibitors and a KSP inhibitor. Increased promoter methylation of SLFN11 was correlated with resistance to DNA damaging agents, as a result of low or no SLFN11 expression. The 5' UTR of the epigenetic modifier EZH2 was associated with response to Aurora kinase inhibitors and a FGFR inhibitor. Methylation and expression of YAP1 were correlated with response to an mTOR inhibitor. Among non-neuroendocrine markers, EPHA2 was associated with response to Aurora kinase inhibitors and a PLK-1 inhibitor and CD151 with Bcl-2 inhibitors.

CONCLUSIONS

Multiple associations indicate potential epigenetic mechanisms affecting SCLC response to chemotherapy and suggest targets for combination therapies. While many correlations were not specific to SCLC lineages, several lineage markers were associated with specific agents.

摘要

背景

小细胞肺癌(SCLC)是一种侵袭性神经内分泌肺癌。SCLC 的进展和治疗耐药性涉及表观遗传过程。然而,SCLC 的 DNA 甲基化与药物反应之间的联系仍不清楚。我们使用 Illumina Infinium MethylationEPIC BeadChip 阵列对 66 个人类 SCLC 细胞系进行了全基因组甲基化研究。研究了 SCLC 的 DNA 甲基化与体外对 526 种抗肿瘤药物反应之间的相关性。

结果

我们发现 DNA 甲基化与化疗敏感性之间存在多种显著相关性。TREX1 编码 3'外切酶 I,在调节细胞质 DNA 感应途径中充当 STING 拮抗剂,其存在潜在的重要关联。TREX1 甲基化增加和表达降低与 Aurora 激酶抑制剂 AZD-1152、SCH-1473759、SNS-314 和 TAK-901、CDK 抑制剂 R-547、Vertex ATR 抑制剂 Cpd 45 和有丝分裂纺锤体破坏剂长春瑞滨的敏感性相关。与其他癌症类型的细胞系相比,TREX1 在 SCLC 中的 mRNA 表达较低,上游区域甲基化增加,这表明它与 SCLC 对 Aurora 激酶抑制剂的敏感性可能有关。我们还发现了多个表明化疗敏感性潜在机制的其他相关性。CEP350 和 MLPH 的 3'UTR 的甲基化分别参与中心体机制和微管追踪,与 Aurora 激酶抑制剂和其他药物的反应相关。EPAS1 甲基化与 Aurora 激酶抑制剂、PLK-1 抑制剂和 Bcl-2 抑制剂的反应相关。KDM1A 甲基化与 PLK-1 抑制剂和 KSP 抑制剂相关。SLFN11 启动子甲基化增加与 DNA 损伤剂的耐药性相关,这是由于 SLFN11 表达水平低或缺失所致。表观遗传修饰剂 EZH2 的 5'UTR 与 Aurora 激酶抑制剂和 FGFR 抑制剂的反应相关。YAP1 的甲基化和表达与 mTOR 抑制剂的反应相关。在非神经内分泌标志物中,EPHA2 与 Aurora 激酶抑制剂和 PLK-1 抑制剂相关,CD151 与 Bcl-2 抑制剂相关。

结论

多种相关性表明可能存在影响 SCLC 对化疗反应的表观遗传机制,并提示了联合治疗的靶点。虽然许多相关性不是 SCLC 谱系特有的,但几个谱系标志物与特定药物相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29a9/7318526/e758f56b8431/13148_2020_876_Fig1_HTML.jpg

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