首页> 外文期刊>Glycobiology >Amino acid residues important for CMP-sialic acid recognition by the CMP-sialic acid transporter: analysis of the substrate specificity of UDP-galactose/CMP-sialic acid transporter chimeras
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Amino acid residues important for CMP-sialic acid recognition by the CMP-sialic acid transporter: analysis of the substrate specificity of UDP-galactose/CMP-sialic acid transporter chimeras

机译:CMP唾液酸转运蛋白识别CMP唾液酸重要的氨基酸残基:UDP-半乳糖/ CMP唾液酸转运蛋白嵌合体的底物特异性分析

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摘要

In our previous studies, we demonstrated that chimeric molecules of the CMP-sialic acid (CMP-Sia) transporter (CST) and the UDP-galactose (Gal) transporter (UGT) in which the seventh transmembrane helix-containing segment was derived from the CST could transport both CMP-Sia and UDP-Gal and that the CST-derived seventh transmembrane helix segment was sufficient for the chimera to recognize CMP-Sia in the otherwise UGT context. In this study, we continued to more precisely define the submolecular region that is necessary for CMP-Sia recognition, and we demonstrated that the N-terminal half of the seventh transmembrane helix of CST is essential for the CMP-Sia transport mediated by the chimeric transporters. We further showed that Tyr214Gly and Ser216Phe mutations of a chimeric transporter that was capable of transporting both CMP-Sia and UDP-Gal led to the selective loss of CMP-Sia transport activity without affecting UDP-Gal transport activity. Conversely, when a residue in a chimeric transporter that was active for UDP-Gal transport but not CMP-Sia transport was replaced by Tyr, so that Tyr occupied the same position as in the CMP-Sia transporter, the resulting mutant chimera acquired the ability to transport CMP-Sia. These results demonstrated that Tyr214 and Ser216, located in the seventh transmembrane helix of the human CST, are critically important for the recognition of CMP-Sia as a transport substrate. Identification of determinants critical for the discrimination between relevant and irrelevant substrates will advance our understanding of the mechanisms of substrate recognition by nucleotide sugar transporters.
机译:在我们以前的研究中,我们证明了CMP-唾液酸(CMP-Sia)转运蛋白(CST)和UDP-半乳糖(Gal)转运蛋白(UGT)的嵌合分子,其中第七个跨膜螺旋段来自于CST可以转运CMP-Sia和UDP-Gal,并且CST衍生的第七个跨膜螺旋段足以使嵌合体在其他情况下在UGT环境中识别CMP-Sia。在这项研究中,我们继续更精确地定义CMP-Sia识别所必需的亚分子区域,并且我们证明了CST第七个跨膜螺旋的N端一半对于由嵌合体介导的CMP-Sia转运至关重要运输者。我们进一步表明,能够转运CMP-Sia和UDP-Gal的嵌合转运蛋白的Tyr214Gly和Ser216Phe突变导致CMP-Sia转运活性的选择性损失,而不影响UDP-Gal转运活性。相反,当嵌合转运蛋白中对UDP-Gal转运有效但对CMP-Sia转运没有活性的残基被Tyr取代时,Tyr占据了与CMP-Sia转运蛋白相同的位置,所得突变嵌合体获得了该能力。运输C​​MP-Sia。这些结果表明,位于人CST的第七个跨膜螺旋中的Tyr214和Ser216对于识别CMP-Sia作为转运底物至关重要。鉴定对相关底物和无关底物之间的区分至关重要的决定因素将促进我们对核苷酸糖转运蛋白识别底物的机制的理解。

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  • 来源
    《Glycobiology》 |2012年第12期|p.1731-1740|共10页
  • 作者单位

    2Department of Applied Chemistry, Faculty of Engineering, Kogakuin University, 2,665-1 Nakano-cho, Hachioji, Tokyo 192-0015, Japan 3Genome Dynamics Project, Tokyo Metropolitan Institute of Medical Science, 2-1-6 Kami-kitazawa, Setagaya-ku, Tokyo 156-8506, Japan 4Faculty of Risk and Crisis Management, Chiba Institute of Science, 3 Shiomi-cho, Choshi, Chiba 288-0025, Japan 5Faculty of Pharmaceutical Sciences, Takasaki University of Health and Welfare, 37-1 Naka-ohruicho, Takasaki, Gunma 370-0033, Japan 6Molecular Medical Research Project, Tokyo Metropolitan Institute of Medical Science, 2-1-6 Kami-kitazawa, Setagaya-ku, Tokyo 156-8506, Japan;

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