Department of Pathology, Affiliated Cancer Hospital, Nantong University, Nantong, China.
Med Oncol. 2012 Dec;29(5):3504-14. doi: 10.1007/s12032-012-0224-x. Epub 2012 Apr 11.
Aberrations in cell cycle control are often observed in tumors and might even be necessary in tumor development. Spy1, a novel cell cycle regulatory protein, can control cell progression and survival through the atypical activation of cyclin-dependent kinases (CDKs). In this progression, the phosphorylation of p27(Kip1) at Thr187 by CDK2 was shown to be a chief role. In this study, we studied 183 human specimens including reactive lymphoid and Non-Hodgkin's Lymphomas (NHLs) tissues. Immunohistochemistry (IHC) analysis suggested that Spy1 and pThr187-p27 were overexpressed in NHLs. The expression of Spy1 was positively related to pThr187-p27 and proliferation marker Ki-67 expression. In a multivariate analysis, high Spy1 and pThr187-p27 expressions were showed to be associated with poor prognosis in NHLs. While in vitro, following release of Jurkat cells from serum starvation, the expression of Spy1 was upregulated, as well as pThr187-p27 and CDK2. And an increased interaction between Spy1 and pThr187-p27 was demonstrated at 4 h after serum stimulation. Additionally, transfecting cells with Spy1-siRNA could diminish the expression of pThr187-p27 and arrest cell growth. Our results suggest that Spy1 may be a possible prognostic indicator in NHLs, and it was correlated with phosphorylation of p27(Kip1) on Thr187. These findings provide a rational framework for further development of Spy1 inhibitors as a novel class of anti-tumor agents.
细胞周期调控异常在肿瘤中经常观察到,甚至可能在肿瘤发展中是必要的。Spy1 是一种新型的细胞周期调控蛋白,可通过非典型激活细胞周期依赖性激酶 (CDKs) 来控制细胞的进展和存活。在这个过程中,CDK2 对 p27(Kip1) Thr187 的磷酸化被证明是一个主要作用。在这项研究中,我们研究了包括反应性淋巴组织和非霍奇金淋巴瘤 (NHL) 组织在内的 183 个人类标本。免疫组织化学 (IHC) 分析表明,Spy1 和 pThr187-p27 在 NHL 中过度表达。Spy1 的表达与 pThr187-p27 和增殖标记物 Ki-67 的表达呈正相关。在多变量分析中,高 Spy1 和 pThr187-p27 表达与 NHL 的不良预后相关。而在体外,当 Jurkat 细胞从血清饥饿中释放出来时,Spy1 的表达上调,以及 pThr187-p27 和 CDK2。在血清刺激后 4 小时,证明 Spy1 和 pThr187-p27 之间的相互作用增加。此外,转染 Spy1-siRNA 的细胞可以减少 pThr187-p27 的表达并阻止细胞生长。我们的结果表明,Spy1 可能是 NHL 中的一个可能的预后指标,并且与 p27(Kip1) Thr187 的磷酸化相关。这些发现为进一步开发 Spy1 抑制剂作为一类新型抗肿瘤药物提供了合理的框架。