Lindberg Daniel, Hessman Ola, Akerström Göran, Westin Gunnar
Department of Surgical Sciences, Endocrine Unit, Uppsala University Hospital, Uppsala, Sweden.
Neuroendocrinology. 2007;86(2):112-8. doi: 10.1159/000106762. Epub 2007 Jul 30.
BACKGROUND/AIMS: Pancreatic endocrine tumors (PETs) occur sporadically, in association with the multiple endocrine neoplasia type 1 (MEN1) and the von Hippel-Lindau syndromes. CDK4 is central to the cell cycle control in pancreatic beta cells, and we have assessed whether CDK4 expression is deregulated in 18 human sporadic or familial PETs.
Real-time quantitative PCR, immunohistochemistry, DNA sequencing, and Western blot analysis were used.
CDK4 mRNA was expressed in all PETs within the range of the arbitrary control. CDK4 protein was absent in normal pancreatic islets but distinctly expressed in all PETs as determined by immunohistochemistry. CDK4 expression was confirmed by Western blot analysis. No significant differences of CDK4 expression were observed between the groups of benign and malignant PETs or between tumors with or without MEN1 gene mutations. CDK4 expression was not due to gene amplification, and no mutations were identified in coding exons and RNA splice sites. c-Myc is known to be overexpressed in PETs and directly augments CDK4 expression in other cell types. Analysis of consecutive tissue sections for CDK4 and c-Myc showed overlapping homo- or heterogeneous immunostaining in all 18 PETs.
We conclude that CDK4 and c-Myc is generally expressed in benign and malignant PETs, and regardless of MEN1 mutational status. Targeting of CDK4 may present an alternative to traditional chemotherapy of PETs in the future.
背景/目的:胰腺内分泌肿瘤(PETs)可散发出现,也可与1型多发性内分泌腺瘤病(MEN1)及冯希佩尔-林道综合征相关。细胞周期蛋白依赖性激酶4(CDK4)在胰腺β细胞的细胞周期调控中起核心作用,我们评估了18例人类散发性或家族性PETs中CDK4的表达是否失调。
采用实时定量PCR、免疫组织化学、DNA测序及蛋白质免疫印迹分析。
所有PETs中均表达CDK4 mRNA,其表达范围在任意对照范围内。免疫组织化学检测显示,正常胰岛中不存在CDK4蛋白,但在所有PETs中均有明显表达。蛋白质免疫印迹分析证实了CDK4的表达。在良性和恶性PETs组之间,以及有无MEN1基因突变的肿瘤之间,未观察到CDK4表达的显著差异。CDK4的表达并非由于基因扩增,在编码外显子和RNA剪接位点未发现突变。已知c-Myc在PETs中过表达,并在其他细胞类型中直接增强CDK4的表达。对CDK4和c-Myc的连续组织切片分析显示,在所有18例PETs中均有重叠的同源或异源免疫染色。
我们得出结论,CDK4和c-Myc通常在良性和恶性PETs中表达,且与MEN1的突变状态无关。靶向CDK4可能在未来成为PETs传统化疗的替代方法。