Yuan Kun, Kucik Dennis, Singh Raj K, Listinsky Catherine M, Listinsky Jay J, Siegal Gene P
Department of Pathology, University of Alabama at Birmingham, Birmingham, AL 35233, USA.
Int J Oncol. 2008 Apr;32(4):797-807.
Glycosylation of proteins plays multiple roles in cell-cell and cell-matrix interactions. Fucose is a monosaccharide associated with glycosylation events and is known to be over-expressed in many malignant tumors. By using alpha-L-fucosidase (alpha-L-fase), a glycosidase that specifically removes alpha-L-fucose (alpha-L-f), we have examined the potential effects of defucosylation on tumor functions, focusing on tumor progression in the context of the interaction of tumor cells with the extracellular microenvironment. In this submission, we report that alpha-L-fase treatment decreases, in static assays, tumor cell adhesion to a wide variety of ECM components including fibronectin, laminin, collagen I, hyaluronic acid and the complex human biomatrix, HuBiogel(R). By immunofluorescence, co-localization of beta1 integrin and alpha-L-f was found to decrease accordingly. Sialyl Lewis X, an alpha-L-f-containing tetrasaccharide, which modulates the rolling of leukocytes and tumor cells on endothelium, was found to be diminished on human breast cancer cells after alpha-L-fase treatment. Using a dynamic flow chamber system, we were able to determine that defucosylation impaired the rolling of mammary cancer cells on human umbilical vein endothelial cells while significantly increasing their flow speed. Further, the rolling capability of these defucosylated tumor cells was also impaired on purified E and P-selectin matrices. Based on these data, we hypothesize that decreased fucosylation impairs the interaction between tumor cells and their external milieu, which in turn, affects key cell functions modulating tumor progression. Building on our previous studies which demonstrated alpha-L-fase decreased tumor cell invasion while significantly reducing MMP-9 activity, when added to the fact that decreased adhesion on HUVEC occurs in the presence of alpha-L-fase also leads us to propose that defucosylation may modulate metastasis, and thus provides a promising additional glycobiotic target for novel therapies.
蛋白质糖基化在细胞间和细胞与基质的相互作用中发挥多种作用。岩藻糖是一种与糖基化事件相关的单糖,已知在许多恶性肿瘤中过度表达。通过使用α-L-岩藻糖苷酶(α-L-fase),一种特异性去除α-L-岩藻糖(α-L-f)的糖苷酶,我们研究了去岩藻糖基化对肿瘤功能的潜在影响,重点关注肿瘤细胞与细胞外微环境相互作用背景下的肿瘤进展。在本论文中,我们报告在静态实验中,α-L-fase处理可降低肿瘤细胞对多种细胞外基质成分的黏附,包括纤连蛋白、层粘连蛋白、I型胶原、透明质酸和复杂的人生物基质HuBiogel®。通过免疫荧光法,发现β1整合素和α-L-f的共定位相应减少。唾液酸化路易斯X,一种含α-L-f的四糖,可调节白细胞和肿瘤细胞在内皮细胞上的滚动,在α-L-fase处理后的人乳腺癌细胞上发现其减少。使用动态流动腔系统,我们能够确定去岩藻糖基化会损害乳腺癌细胞在人脐静脉内皮细胞上的滚动,同时显著提高其流速。此外,这些去岩藻糖基化的肿瘤细胞在纯化的E和P选择素基质上的滚动能力也受到损害。基于这些数据,我们推测岩藻糖基化减少会损害肿瘤细胞与其外部环境之间的相互作用,进而影响调节肿瘤进展的关键细胞功能。基于我们之前的研究表明α-L-fase可降低肿瘤细胞侵袭并显著降低MMP-9活性,再加上在α-L-fase存在下对人脐静脉内皮细胞黏附减少这一事实,也使我们提出去岩藻糖基化可能调节转移,因此为新型疗法提供了一个有前景的额外糖生物学靶点。