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通过转染α1→3岩藻糖基转移酶(Fuc-T VII)的反义cDNA抑制培养的人淋巴细胞中唾液酸化路易斯X表达和E-选择素介导的细胞粘附。

Suppression of sialyl Lewis X expression and E-selectin-mediated cell adhesion in cultured human lymphoid cells by transfection of antisense cDNA of an alpha1-->3 fucosyltransferase (Fuc-T VII).

作者信息

Hiraiwa N, Dohi T, Kawakami-Kimura N, Yumen M, Ohmori K, Maeda M, Kannagi R

机构信息

Program of Experimental Pathology, Research Institute, Aichi Cancer Center, Nagoya 464, Japan.

出版信息

J Biol Chem. 1996 Dec 6;271(49):31556-61. doi: 10.1074/jbc.271.49.31556.

Abstract

The antisense cDNA approach was used to identify the endogenous fucosyltransferase species responsible for synthesis of the sialyl Lewis X (NeuAcalpha2-->3 Galbeta1-->4[Fucalpha1-->3]GlcNAcbeta1-->R) determinant in human lymphoid cells. The cultured human adult T-cell leukemia cell line, ED40515-N, expressed the message of alpha1-->3 fucosyltransferase (Fuc-T) IV and VII, with a low level of the Fuc-T III and VI message, and manifested the sialyl Lewis X as well as Lewis X (Galbeta1-->4 [Fucalpha1-->3]GlcNAcbeta1-->R) determinant at the cell surface. Transfection of this cell line with the pRc/CMV vector containing an antisense human Fuc-T VII construct (pRc/CMV/5'FT7AS) resulted in a significant decrease of endogenous Fuc-T VII message and a marked reduction in the cell surface expression of sialyl Lewis X determinant as well as a reduction in the enzymatic activity of alpha1-->3 fucosyltransferase against sialylated type 2 chain substrate. This was accompanied by diminution of cell adhesive activity toward E-selectin on interleukin-1beta-treated endothelial cells. These results indicated that the synthesis of the sialyl Lewis X determinants that were functionally active as E-selectin ligands was mainly mediated by Fuc-T VII in these lymphoid cells. On the other hand, the message of Fuc-T IV showed no significant change in the transfectant clones, and the surface expression of the Lewis X antigen as well as the enzymatic activity of alpha1-->3 fucosyltransferase against non-sialylated type 2 chain substrate was well preserved. The clear contrast between the diminished expression of sialyl Lewis X and the conserved manifestation of Lewis X in the transfectant clones suggested that the synthesis of sialyl Lewis X and that of Lewis X are independently regulated by different fucosyltransferases in human lymphoid cells. Fuc-T VII must be involved in the synthesis of sialyl Lewis X, while the synthesis of Lewis X is mediated by an enzyme other than Fuc-T VII, most probably Fuc-T IV.

摘要

采用反义cDNA方法鉴定负责在人淋巴细胞中合成唾液酸化路易斯X(NeuAcalpha2→3 Galbeta1→4[Fucalpha1→3]GlcNAcbeta1→R)决定簇的内源性岩藻糖基转移酶种类。培养的成人T细胞白血病细胞系ED40515-N表达α1→3岩藻糖基转移酶(Fuc-T)IV和VII的信使,Fuc-T III和VI的信使水平较低,并且在细胞表面表现出唾液酸化路易斯X以及路易斯X(Galbeta1→4 [Fucalpha1→3]GlcNAcbeta1→R)决定簇。用含有反义人Fuc-T VII构建体(pRc/CMV/5'FT7AS)的pRc/CMV载体转染该细胞系,导致内源性Fuc-T VII信使显著减少,唾液酸化路易斯X决定簇的细胞表面表达明显降低,以及α1→3岩藻糖基转移酶对唾液酸化2型链底物的酶活性降低。这伴随着细胞对白介素-1β处理的内皮细胞上E-选择素的黏附活性降低。这些结果表明,作为E-选择素配体具有功能活性的唾液酸化路易斯X决定簇的合成在这些淋巴细胞中主要由Fuc-T VII介导。另一方面,Fuc-T IV的信使在转染克隆中没有显著变化,路易斯X抗原的表面表达以及α1→3岩藻糖基转移酶对非唾液酸化2型链底物的酶活性得到很好的保留。转染克隆中唾液酸化路易斯X表达的减少与路易斯X的保守表现之间的明显对比表明,唾液酸化路易斯X和路易斯X的合成在人淋巴细胞中由不同的岩藻糖基转移酶独立调节。Fuc-T VII必须参与唾液酸化路易斯X的合成,而路易斯X的合成由Fuc-T VII以外的酶介导,很可能是Fuc-T IV。

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