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人类和果蝇的UDP-半乳糖转运蛋白除了转运UDP-半乳糖外,还转运UDP-N-乙酰半乳糖胺。

Human and Drosophila UDP-galactose transporters transport UDP-N-acetylgalactosamine in addition to UDP-galactose.

作者信息

Segawa Hiroaki, Kawakita Masao, Ishida Nobuhiro

机构信息

Department of Physiological Chemistry, The Tokyo Metropolitan Institute of Medical Science (Rinshoken), Honkomagome, Bunkyo-ku, Tokyo, Japan.

出版信息

Eur J Biochem. 2002 Jan;269(1):128-38. doi: 10.1046/j.0014-2956.2001.02632.x.

Abstract

A putative Drosophila nucleotide sugar transporter was characterized and shown to be the Drosophila homologue of the human UDP-Gal transporter (hUGT). When the Drosophila melanogaster UDP-Gal transporter (DmUGT) was expressed in mammalian cells, the transporter protein was localized in the Golgi membranes and complemented the UDP-Gal transport deficiency of Lec8 cells but not the CMP-Sia transport deficiency of Lec2 cells. DmUGT and hUGT were expressed in Saccharomyces cerevisiae cells in functionally active forms. Using microsomal vesicles isolated from Saccharomyces cerevisiae expressing these transporters, we unexpectedly found that both hUGT and DmUGT could transport UDP-GalNAc as well as UDP-Gal. When amino-acid residues that are conserved among human, murine, fission yeast and Drosophila UGTs, but are distinct from corresponding ones conserved among CMP-Sia transporters (CSTs), were substituted by those found in CST, the mutant transporters were still active in transporting UDP-Gal. One of these mutants in which Asn47 was substituted by Ala showed aberrant intracellular distribution with concomitant destabilization of the protein product. However, this mutation was suppressed by an Ile51 to Thr second-site mutation. Both residues were localized within the first transmembrane helix, suggesting that the structure of the helix contributes to the stabilization and substrate recognition of the UGT molecule.

摘要

对一种假定的果蝇核苷酸糖转运蛋白进行了表征,结果表明它是人类UDP - 半乳糖转运蛋白(hUGT)的果蝇同源物。当果蝇黑腹UDP - 半乳糖转运蛋白(DmUGT)在哺乳动物细胞中表达时,转运蛋白定位于高尔基体膜,并弥补了Lec8细胞的UDP - 半乳糖转运缺陷,但不能弥补Lec2细胞的CMP - 唾液酸转运缺陷。DmUGT和hUGT以功能活性形式在酿酒酵母细胞中表达。使用从表达这些转运蛋白的酿酒酵母中分离的微粒体囊泡,我们意外地发现hUGT和DmUGT都可以转运UDP - N - 乙酰半乳糖胺以及UDP - 半乳糖。当人类、小鼠、裂殖酵母和果蝇UGT中保守但与CMP - 唾液酸转运蛋白(CST)中相应保守残基不同的氨基酸残基被CST中发现的残基取代时,突变转运蛋白在转运UDP - 半乳糖方面仍然具有活性。其中一个Asn47被Ala取代的突变体显示出异常的细胞内分布,同时蛋白质产物不稳定。然而,这种突变被Ile51到Thr的第二位点突变所抑制。这两个残基都位于第一个跨膜螺旋内,表明螺旋结构有助于UGT分子的稳定和底物识别。

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