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Role for p16(INK4a) in progression of gastrointestinal stromal tumors of the stomach: alteration of p16(INK4a) network members.

机译:p16(INK4a)在胃胃肠道间质瘤进展中的作用:p16(INK4a)网络成员的改变。

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Gastrointestinal stromal tumors feature a wide spectrum of biologic behavior, ranging from benign to extremely malignant. To determine the role of p16(INK4a) alteration in progression of gastrointestinal stromal tumors of the stomach, we have investigated protein expression and gene methylation in correlation with clinicopathologic factors and survival. In addition to immunohistochemical analysis of p16(INK4a) in a series of 95 cases, real-time quantitative methylation specific polymerase chain reaction for p16(INK4a) and immunostaining for cyclin D1, cyclin E, pRb, DP-1, E2F-1, and Ki-67 were also evaluated in randomly selected samples. The p16(INK4a) labeling indices ranged from 0% to 74% (median, 21%), demonstrating a significant inverse correlation with size (P = .046). On univariate (P = .003) and multivariate (P = .067) analyses, loss of p16(INK4a) expression increased the likelihood of a poor tumor-related survival. In addition, size (P = .036) and the mitotic index (P = .005) had independent prognostic influence. The p16(INK4a) methylation index, which ranged from 0% to 100% (median, 17%), was significantly higher in larger tumors (P < .001) and in high-risk category lesions (P = .001) and inversely correlated with protein expression. Hierarchical cluster analysis based on expression of p16(INK4a) network members identified 2 clusters in 27 randomly selected tumor samples, containing 11 and 16 tumors each. Former cluster samples demonstrated higher risk category (P = .022), higher p16(INK4a) methylation (P < .001), and more reduced pRb expression (P < .018). In addition, p16(INK4a) network members clustered into 2 groups: (1) showing down-regulated p16(INK4a) protein and up-regulating of both cyclin D1 and DP-1 and (2) down-regulated pRb and up-regulated E2F-1. We conclude that p16(INK4a) alteration has an important role in progression of gastrointestinal stromal tumors of the stomach. Furthermore, the study provides a possible link between regulation of p16(INK4a) network members and gastrointestinal stromal tumors.
机译:胃肠道间质瘤具有广泛的生物学行为,从良性到极度恶性。为了确定p16(INK4a)改变在胃胃肠道间质瘤进展中的作用,我们研究了蛋白表达和基因甲基化与临床病理因素和生存的关系。除了对95例p16(INK4a)进行免疫组织化学分析外,p16(INK4a)的实时定量甲基化特异性聚合酶链反应和cyclin D1,cyclin E,pRb,DP-1,E2F-1的免疫染色,还从随机选择的样品中评估了Ki和67。 p16(INK4a)标记指数范围从0%到74%(中位数为21%),表明其与大小呈显着的负相关(P = .046)。单因素(P = 0.003)和多元(P = .067)分析中,p16(INK4a)表达的缺失增加了肿瘤相关生存不良的可能性。此外,大小(P = .036)和有丝分裂指数(P = .005)具有独立的预后影响。 p16(INK4a)甲基化指数的范围为0%至100%(中位数为17%),在较大的肿瘤(P <.001)和高危类别的病变(P = .001)中显着较高,反之亦然与蛋白质表达相关。基于p16(INK4a)网络成员表达的层次聚类分析在27个随机选择的肿瘤样本中确定了2个聚类,每个样本分别包含11和16个肿瘤。前一组样本显示较高的风险类别(P = .022),较高的p16(INK4a)甲基化(P <.001)和更多的pRb表达降低(P <.018)。此外,p16(INK4a)网络成员分为两组:(1)显示下调的p16(INK4a)蛋白和细胞周期蛋白D1和DP-1的上调,以及(2)下调的pRb和上调E2F-1。我们得出结论,p16(INK4a)改变在胃胃肠道间质瘤的进展中具有重要作用。此外,该研究提供了p16(INK4a)网络成员的调节与胃肠道间质瘤之间的可能联系。

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