Swanson Benjamin J, McDermott Kimberly M, Singh Pankaj K, Eggers John P, Crocker Paul R, Hollingsworth Michael A
Eppley Institute for Research in Cancer and Allied Diseases and the Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha, NE 68198-6805, USA.
Cancer Res. 2007 Nov 1;67(21):10222-9. doi: 10.1158/0008-5472.CAN-06-2483.
Perineural invasion in pancreatic adenocarcinoma, a common pathologic phenomenon whereby cancer cells invade and intimately contact the endoneurium of pancreatic nerves, is thought to contribute to both pain and local disease recurrence. MUC1, a type I transmembrane mucin that can affect the adhesive properties of cells, contains a large extracellular tandem repeat domain, which is heavily glycosylated in normal epithelia, but is overexpressed and differentially glycosylated in pancreatic cancer. This altered glycosylation includes the shortened core I O-glycans for monosialyl and disialyl T antigens. Myelin-associated glycoprotein (MAG), a membrane-bound protein expressed on oligodendrocytes and Schwann cells, binds myelin to neurons. MAG's preferred ligands are derivatives of the monosialyl and disialyl T antigen. We investigated whether MUC1 is a counter-receptor for MAG and if their interaction contributed to pancreatic perineural invasion. Results showed that MAG binds pancreatic cells expressing MUC1, that this binding is sialidase-sensitive, and that MAG physically associates with MUC1. Heterotypic adhesion assays between pancreatic cancer cells and Schwann cells revealed that increased expression of MUC1 or MAG enhanced adhesion. Conversely, specific inhibition of MAG or sialyl-T MUC1 partially blocked adhesion. Immunohistochemical analysis of pancreatic perineural invasion showed the expression of both MUC1 and MAG. These results support the hypothesis that the adhesive interactions between MUC1 and MAG are of biological significance in pancreatic cancer perineural invasion.
胰腺腺癌中的神经周围浸润是一种常见的病理现象,即癌细胞侵入并紧密接触胰腺神经的神经内膜,被认为与疼痛和局部疾病复发均有关。MUC1是一种I型跨膜粘蛋白,可影响细胞的粘附特性,它包含一个大的细胞外串联重复结构域,在正常上皮细胞中该结构域高度糖基化,但在胰腺癌中过表达且糖基化方式不同。这种糖基化改变包括单唾液酸和双唾液酸T抗原的核心I O-聚糖缩短。髓磷脂相关糖蛋白(MAG)是一种在少突胶质细胞和施万细胞上表达的膜结合蛋白,可将髓磷脂与神经元结合。MAG的首选配体是单唾液酸和双唾液酸T抗原的衍生物。我们研究了MUC1是否是MAG的反受体,以及它们之间的相互作用是否促成胰腺神经周围浸润。结果表明,MAG与表达MUC1的胰腺细胞结合,这种结合对唾液酸酶敏感,并且MAG与MUC1在物理上相互关联。胰腺癌细胞与施万细胞之间的异型粘附试验表明,MUC1或MAG表达增加会增强粘附。相反,对MAG或唾液酸-T MUC1的特异性抑制会部分阻断粘附。胰腺神经周围浸润的免疫组织化学分析显示了MUC1和MAG的表达。这些结果支持了以下假设:MUC1和MAG之间的粘附相互作用在胰腺癌神经周围浸润中具有生物学意义。