Kimura N, Mitsuoka C, Kanamori A, Hiraiwa N, Uchimura K, Muramatsu T, Tamatani T, Kansas G S, Kannagi R
Program of Experimental Pathology, Aichi Cancer Center, Nagoya 464-8681, Japan.
Proc Natl Acad Sci U S A. 1999 Apr 13;96(8):4530-5. doi: 10.1073/pnas.96.8.4530.
Recently, we proposed sialyl 6-sulfo Lewis X as a major carbohydrate-capping group of the L-selectin ligands on high endothelial venules in human lymph nodes. In this study we succeeded in reconstituting functional L-selectin ligands on a cultured human endothelial cell line, ECV304, by transfecting the alpha1-->3fucosyltranseferase VII (Fuc-T VII) and newly cloned GlcNAcbeta:6-sulfotransferase (6-Sul-T) cDNAs. The ECV304 cells transfected with Fuc-T VII cDNA expressed conventional sialyl Lewis X detected with specific antibodies including 2H5, whereas the cells transfected with 6-Sul-T cDNA expressed sialyl 6-sulfo lactosamine as well as MECA-79-defined carbohydrate determinants, but these singly transfected cells failed to express sialyl 6-sulfo Lewis X, as detected with the antisialyl 6-sulfo Lewis X mAb G152. Sialyl 6-sulfo Lewis X appeared only on the cells that were cotransfected with both 6-Sul-T and Fuc-T VII cDNAs. Significant adhesion of L-selectin-expressing cells was seen only to the doubly transfected ECV304 cells and was inhibited by G152. No adhesion was observed to the cells transfected either with 6-Sul-T or with Fuc-T VII cDNA alone. The mRNAs of the two enzymes were expressed or were inducible upon interleukin 1 stimulation in human endothelial cells. These results indicate that a set of carbohydrate determinants synthesized by the concerted action of the two enzymes, as typically represented by the sialyl 6-sulfo Lewis X-capping group, serves as an essential component of the ligand for L-selectin and that the reagents 2H5 and MECA-79, utilized in earlier studies to detect L-selectin ligand on high endothelial venules, recognize two different aspects of the same set of synthetic products.
最近,我们提出唾液酸化6-磺酸基路易斯X是人类淋巴结中高内皮微静脉上L-选择素配体的主要碳水化合物封端基团。在本研究中,我们通过转染α1→3岩藻糖基转移酶VII(Fuc-T VII)和新克隆的GlcNAcβ:6-磺基转移酶(6-Sul-T)cDNA,成功在培养的人内皮细胞系ECV304上重建了功能性L-选择素配体。用Fuc-T VII cDNA转染的ECV304细胞表达了用包括2H5在内的特异性抗体检测到的传统唾液酸化路易斯X,而用6-Sul-T cDNA转染的细胞表达了唾液酸化6-磺酸乳糖胺以及MECA-79定义的碳水化合物决定簇,但这些单独转染的细胞未能表达用抗唾液酸化6-磺酸基路易斯X单克隆抗体G152检测到唾液酸化6-磺酸基路易斯X。唾液酸化6-磺酸基路易斯X仅出现在同时转染了6-Sul-T和Fuc-T VII cDNA的细胞上。仅在双重转染的ECV304细胞上观察到表达L-选择素的细胞有显著黏附,且被G152抑制。单独用6-Sul-T或Fuc-T VII cDNA转染的细胞未观察到黏附。这两种酶的mRNA在人内皮细胞中表达或在白细胞介素1刺激后可诱导表达。这些结果表明,由这两种酶协同作用合成的一组碳水化合物决定簇,以唾液酸化6-磺酸基路易斯X封端基团为典型代表,是L-选择素配体的重要组成部分,并且早期研究中用于检测高内皮微静脉上L-选择素配体的试剂2H5和MECA-79识别同一组合成产物的两个不同方面。