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B56γ基因等位基因缺失激活肺腺癌中的ERK/IER3/PP2A-B56γ阳性反馈回路。

Activation of ERK/IER3/PP2A-B56γ-positive feedback loop in lung adenocarcinoma by allelic deletion of B56γ gene.

作者信息

Ito Tomoko, Ozaki Satoru, Chanasong Rachanee, Mizutani Yuki, Oyama Takeru, Sakurai Hiroshi, Matsumoto Isao, Takemura Hirofumi, Kawahara Ei

机构信息

Department of Thoracic, Cardiovascular and General Surgery, Graduate School of Medical Sciences, Kanazawa University, Kanazawa 920-8640, Japan.

Department of Clinical Laboratory Medicine, Graduate School of Health Sciences, Kanazawa University, Kanazawa 920-0942, Japan.

出版信息

Oncol Rep. 2016 May;35(5):2635-42. doi: 10.3892/or.2016.4677. Epub 2016 Mar 16.

Abstract

In order to investigate the involvement of the IER3/PP2A-B56γ/ERK-positive feedback loop, which leads to sustained phosphorylation/activation of ERK in carcinogenesis, we immunohistochemically examined the expression of IER3 and phosphorylated ERK in lung tumor tissues. IER3 was overexpressed in all cases of adenocarcinomas examined, but was not overexpressed in squamous cell carcinomas. Phosphorylated ERK (pERK) was also overexpressed in almost all adenocarcinomas. EGFR and RAS, whose gene product is located upstream of ERK, were sequenced. Activating mutation of EGFR, which is a possible cause of overexpression of IER3 and pERK, was found only in 5 adenocarcinomas (42%). No mutation of RAS was found. We further examined the sequences of all exons of B56γ gene (PPP2R5C) and IER3, but no mutation was found. Using a single nucleotide insertion in intron 1 of PPP2R5C, which was found in the process of sequencing, allelic deletion of PPP2R5C was examined. Eight cases were informative (67%), and the deletion was found in 4 of them (50%). Three cases having deletion of PPP2R5C did not have EGFR mutation. Finally, PPP2R5C deletion or EGFR mutation that could be responsible for IER3/pERK overexpression was found in at least 8 cases (67% or more). This is the first report of a high incidence of deletion of PPP2R5C in human carcinomas.

摘要

为了研究IER3/PP2A-B56γ/ERK阳性反馈回路(该回路在致癌过程中导致ERK持续磷酸化/激活)的作用,我们采用免疫组化方法检测了肺肿瘤组织中IER3和磷酸化ERK的表达。在所检测的所有腺癌病例中,IER3均呈过表达,但在鳞状细胞癌中未过表达。几乎所有腺癌中磷酸化ERK(pERK)也呈过表达。对位于ERK上游的基因产物EGFR和RAS进行了测序。仅在5例腺癌(42%)中发现了可能导致IER3和pERK过表达的EGFR激活突变。未发现RAS突变。我们进一步检测了B56γ基因(PPP2R5C)和IER3所有外显子的序列,但未发现突变。利用在测序过程中发现的PPP2R5C内含子1中的单核苷酸插入,检测了PPP2R5C的等位基因缺失情况。8例具有信息性(67%),其中4例(50%)发现有缺失。3例存在PPP2R5C缺失的病例没有EGFR突变。最后,至少在8例(67%或更多)病例中发现了可能导致IER3/pERK过表达的PPP2R5C缺失或EGFR突变。这是关于人类癌中PPP2R5C缺失高发生率的首次报道。

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