Hox基因
医学
肿瘤科
癌症研究
同源盒
内科学
候选基因
微阵列
基因
生物信息学
生物
基因表达
遗传学
作者
Young-Bem Se,Seung‐Hyun Kim,Ji Young Kim,Ja‐Eun Kim,Yun‐Sik Dho,Jin‐Wook Kim,Yong Hwy Kim,Hyun Goo Woo,Se-Hyuk Kim,Shin-Hyuk Kang,Yong Joon Kim,Tae Min Kim,Soon‐Tae Lee,Seung Hong Choi,Sung‐Hye Park,Il Han Kim,Dong Gyu Kim,Chul‐Kee Park
出处
期刊:Cancer Research and Treatment
[Korean Cancer Association]
日期:2017-04-15
卷期号:49 (2): 387-398
被引量:35
摘要
Homeobox (HOX) genes are essential developmental regulators that should normally be in the silenced state in an adult brain. The aberrant expression of HOX genes has been associated with the prognosis of many cancer types, including glioblastoma (GBM). This study examined the identity and role of HOX genes affecting GBM prognosis and treatment resistance.The full series of HOX genes of five pairs of initial and recurrent human GBM samples were screened by microarray analysis to determine the most plausible candidate responsible for GBM prognosis. Another 20 newly diagnosed GBM samples were used for prognostic validation. In vitro experiments were performed to confirm the role of HOX in treatment resistance. Mediators involved in HOX gene regulation were searched using differentially expressed gene analysis, gene set enrichment tests, and network analysis.The underexpression of HOXA11 was identified as a consistent signature for a poor prognosis among the HOX genes. The overall survival of the GBM patients indicated a significantly favorable prognosis in patients with high HOXA11 expression (31±15.3 months) compared to the prognoses in thosewith low HOXA11 expression (18±7.3 months, p=0.03). When HOXA11 was suppressed in the GBM cell lines, the anticancer effect of radiotherapy and/or temozolomide declined. In addition, five candidate mediators (TGFBR2, CRIM1, TXNIP, DPYSL2, and CRMP1) that may confer an oncologic effect after HOXA11 suppression were identified.The treatment resistance induced by the underexpression of HOXA11 can contribute to a poor prognosis in GBM. Further investigation will be needed to confirm the value of HOXA11 as a potential target for overcoming the treatment resistance by developing chemo- or radiosensitizers.
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