Mandel U, White T, Karkov J, Hakomori S, Clausen H, Dabelsteen E
Department of Oral Diagnosis, Royal Dental College, Copenhagen, Denmark.
J Oral Pathol Med. 1990 Jul;19(6):251-6. doi: 10.1111/j.1600-0714.1990.tb00836.x.
The histo-blood group ABO carbohydrate antigens are differentially expressed in epithelia in close correlation with cellular differentiation. In order to gain insight into the biosynthetic regulation of these carbohydrate antigens, we correlated the expression of A carbohydrate antigens with that of the A gene defined glycosyl-transferase by immunohistology of human oral epithelia using monoclonal antibodies. In glandular epithelium the A transferase was found in mucous cells similar to that of the A carbohydrate antigens. In stratified non-keratinized squamous epithelium the A transferase was expressed only in spinous cell layers, which is in accordance with the appearance of the A carbohydrate antigens in these more mature cell layers. This simultaneous acquisition of the primary and secondary gene product of a glycosyltransferase gene, provides evidence that the well-defined sequential expression of histo-blood group carbohydrate antigens in stratified squamous epithelium may be directly regulated at the transcriptional level of the glycosyltransferase. Future studies will address the mechanism behind loss of A antigens in premalignant lesions and carcinomas.
组织血型ABO碳水化合物抗原在上皮细胞中差异表达,与细胞分化密切相关。为了深入了解这些碳水化合物抗原的生物合成调控,我们通过使用单克隆抗体对人类口腔上皮进行免疫组织学研究,将A碳水化合物抗原的表达与A基因定义的糖基转移酶的表达进行了关联。在腺上皮中,A转移酶存在于黏液细胞中,类似于A碳水化合物抗原的分布。在复层非角化鳞状上皮中,A转移酶仅在棘细胞层表达,这与这些更成熟细胞层中A碳水化合物抗原的出现情况一致。糖基转移酶基因的初级和次级基因产物的同时获得,证明了复层鳞状上皮中组织血型碳水化合物抗原明确的顺序表达可能在糖基转移酶的转录水平直接受到调控。未来的研究将探讨癌前病变和癌中A抗原丢失背后的机制。