Duex Jason E, Owens Charles, Chauca-Diaz Ana, Dancik Garrett M, Vanderlinden Lauren A, Ghosh Debashis, Leivo Mariah Z, Hansel Donna E, Theodorescu Dan
Departments of Surgery and Pharmacology, University of Colorado, Aurora, Colorado.
Department of Mathematics and Computer Science, Eastern Connecticut State University, Willimantic, Connecticut.
Cancer Res. 2017 Sep 15;77(18):4858-4867. doi: 10.1158/0008-5472.CAN-17-0367. Epub 2017 Jul 3.
Elevated tumor expression of the cell surface GPI-linked CD24 protein signals poor patient prognosis in many tumor types. However, some cancer cells selected to be negative for surface CD24 (surCD24) still retain aggressive phenotypes and Here, we resolve this apparent paradox with the discovery of biologically active, nuclear CD24 (nucCD24) and finding that its levels are unchanged in surCD24 cells. Using the complementary techniques of biochemical cellular fractionation and immunofluorescence, we demonstrate a signal for CD24 in the nucleus in cells from various histologic types of cancer. Nuclear-specific expression of CD24 (NLS-CD24) increased anchorage-independent growth and tumor formation Immunohistochemistry of patient tumor samples revealed the presence of nucCD24, whose signal intensity correlated positively with the presence of metastatic disease. Analysis of gene expression between cells expressing CD24 and NLS-CD24 revealed a unique nucCD24 transcriptional signature. The median score derived from this signature was able to stratify overall survival in four patient datasets from bladder cancer and five patient datasets from colorectal cancer. Patients with high scores (more nucCD24-like) had reduced survival. These findings define a novel and functionally important intracellular location of CD24; they explain why surCD24 cells can remain aggressive, and they highlight the need to consider nucCD24 in both fundamental research and therapeutic development. .
细胞表面糖基磷脂酰肌醇连接的CD24蛋白在肿瘤中的高表达预示着多种肿瘤类型患者的预后不良。然而,一些表面CD24(surCD24)呈阴性的癌细胞仍保留侵袭性表型。在此,我们通过发现具有生物活性的核CD24(nucCD24)并发现其在surCD24细胞中的水平未改变,解决了这一明显的矛盾。我们运用生化细胞分级分离和免疫荧光等互补技术,证明了来自各种组织学类型癌症的细胞中核内存在CD24信号。CD24的核特异性表达(NLS-CD24)增加了非锚定依赖性生长和肿瘤形成。对患者肿瘤样本的免疫组织化学分析显示存在nucCD24,其信号强度与转移疾病的存在呈正相关。对表达CD24和NLS-CD24的细胞之间基因表达的分析揭示了一种独特的nucCD24转录特征。源自该特征的中位数评分能够对来自膀胱癌的四个患者数据集和来自结直肠癌的五个患者数据集的总生存期进行分层。评分高的患者(更像nucCD24)生存期缩短。这些发现定义了CD24一个新的且具有功能重要性的细胞内定位;它们解释了为什么surCD24细胞能够保持侵袭性,并且它们强调了在基础研究和治疗开发中都需要考虑nucCD24。