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首页> 外文期刊>Journal of Cancer Research and Clinical Oncology >Genetic and protein changes of E-cadherin in meningiomas.
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Genetic and protein changes of E-cadherin in meningiomas.

机译:脑膜瘤中E-钙粘蛋白的遗传和蛋白质变化。

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摘要

PURPOSE: The molecular mechanisms and candidate genes involved in development of meningiomas still needs investigation and elucidation. METHODS: In the present study 60 meningiomas were analyzed regarding changes of tumor suppressor gene E-cadherin (CDH1), a component of adherens junction and an indirect modulator of the wnt signaling. Gene instability was tested by polymerase chain reaction/loss of heterozygosity (LOH) method. Protein expression was analyzed by immunohistochemistry. RESULTS: The results of our analysis showed altogether 32% of samples with LOH of the CDH1 gene. Interestingly, another type of genomic instability was detected; replication error-positive samples (RER+). Three out of 28 heterozygous samples were RER+ (11%). The instability is the result of impaired cellular mismatch repair. Fibrous and angiomatous cases showed higher percent of genetic changes, 67 and 75%, respectively. Immunostaining showed that overall 73% of samples had downregulation of E-cadherin expression. Intense downregulation of E-cadherin was noticed in tumors with grades II and III. Five out of nine samples with LOH were accompanied with the downregulation of E-cadherin protein expression (56%). One RER+ sample had lower expression of E-cadherin. We noticed that 36.4% of samples with lower E-cadherin expression had beta-catenin located in the nucleus. Also, 75% of samples with genomic instabilities had beta-catenin in the nucleus. Our findings demonstrated that there is significant association between the genetic changes of CDH1 and the nuclear localization of beta-catenin protein (chi(2) = 5.25, df = 1, P < 0.022). Beta-catenin was progressively upregulated from meningothelial to atypical, while 60% of anaplastic showed upregulation and nuclear localization of the protein. CONCLUSIONS: Our results suggest that genetic instabilities of the E-cadherin gene have a role in meningioma development and progression. Detected microsatellite instability indicates that mismatch repair may also be targeted in meningioma.
机译:目的:与脑膜瘤发展有关的分子机制和候选基因仍需研究和阐明。方法:在本研究中,分析了60例脑膜瘤的肿瘤抑制基因E-钙粘蛋白(CDH1),粘附连接的成分和wnt信号的间接调节剂的变化。通过聚合酶链反应/杂合性缺失(LOH)方法测试基因的不稳定性。通过免疫组织化学分析蛋白质表达。结果:我们的分析结果显示,共有32%的样本具有CDH1基因的LOH。有趣的是,检测到另一种基因组不稳定性。复制错误阳性样本(RER +)。 28个杂合样本中有3个是RER +(11%)。这种不稳定性是细胞错配修复受损的结果。纤维和血管瘤病例显示较高的遗传变化百分比,分别为67%和75%。免疫染色显示,总体样本中有73%的E-钙粘蛋白表达下调。在II级和III级肿瘤中发现E-cadherin的强烈下调。 9个LOH样本中有5个伴有E-钙粘蛋白蛋白表达的下调(56%)。 1个RER +样品的E-钙粘蛋白表达较低。我们注意到36.4%的具有较低E-钙粘蛋白表达的样品中有β-catenin位于细胞核中。同样,具有基因组不稳定性的样本中有75%的核中含有β-连环蛋白。我们的发现表明,CDH1的遗传变化与β-catenin蛋白的核定位之间存在显着关联(chi(2)= 5.25,df = 1,P <0.022)。 β-catenin从脑膜到非典型逐渐上调,而60%的间变性显示该蛋白的上调和核定位。结论:我们的结果表明,E-钙粘蛋白基因的遗传不稳定性与脑膜瘤的发生和发展有关。检测到的微卫星不稳定性表明失配修复也可能是脑膜瘤的目标。

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