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二半乳糖基甘油醚脂质:作为 SK3 通道抑制剂的合成方法及评价。

DiGalactosyl-Glycero-Ether Lipid: synthetic approaches and evaluation as SK3 channel inhibitor.

机构信息

Université de Brest, UEB, CEMCA, CNRS UMR 6521, SFR ScInBIoS, 6 Avenue Le Gorgeu, 29238 Brest, France.

出版信息

Org Biomol Chem. 2013 Jul 21;11(27):4479-87. doi: 10.1039/c3ob40634b.

DOI:10.1039/c3ob40634b
PMID:23715410
Abstract

The recent discoveries of the involvement of SK3 channel in some cell motility mechanisms occurring in cancer disease have opened up the way to the synthesis of inhibitors that could reduce metastasis formation. On the basis of our recent previous works showing that both lactose-glycero-ether lipid (Ohmline) and some phosphate analogues (GPGEL) were efficient compounds to modulate SK3 channel activity, the present study, which found its inspiration in the structure of the natural glycolipid DiGalactosylDiacylGlycerol (DGDG), reports the incorporation of a digalactosyl moiety (α-galactopyranosyl-(1→6)-β-galactopyranosyl-) as the polar head of a glycero ether lipid. For the construction of the digalactosyl fragment, two synthetic approaches were compared. The standard strategy which is based on the use of the benzyl protecting group to produce 1→6 disaccharide unit, was compared with a second method that made use of the trimethylsilyl moiety as a protecting group. This second strategy, which is applied for the first time to the synthesis of (1→6)-disaccharide unit, presents a net advantage in terms of efficacy (better global yield) and cost. Finally, compound 16, which is characterized by a (1→6) DiGalactosyl unit (DG) as the polar head of the amphiphilic structure, was tested as a modulator of the SK3 channel activity. Patch-clamp experiments have shown that compound 16 reduced SK3 currents (-28.2 ± 2.0% at 5 μM) and cell migration assays performed at 300 nM have shown a reduction of cell migration (SK3 + HEK293T) by 19.6 ± 2.7%.

摘要

最近的研究发现,SK3 通道参与了癌症疾病中一些细胞运动机制的发生,这为合成能够减少转移形成的抑制剂开辟了道路。基于我们最近的研究工作,表明乳糖甘油醚脂质(Ohmline)和一些磷酸盐类似物(GPGEL)是有效调节 SK3 通道活性的化合物,本研究受到天然糖脂二半乳糖基二酰基甘油(DGDG)结构的启发,报告了在甘油醚脂质的极性头中引入双半乳糖基部分(α-半乳糖吡喃基-(1→6)-β-半乳糖吡喃基-)。为了构建双半乳糖基部分,比较了两种合成方法。基于使用苄基保护基产生 1→6 二糖单元的标准策略,与第二种利用三甲基硅基作为保护基的方法进行了比较。这种第二种策略,首次应用于(1→6)-二糖单元的合成,在功效(更好的总产率)和成本方面具有明显优势。最后,测试了化合物 16,其特征是具有(1→6)双半乳糖基单元(DG)作为两亲结构的极性头,作为 SK3 通道活性调节剂。膜片钳实验表明,化合物 16 减少了 SK3 电流(在 5 μM 时为-28.2±2.0%),在 300 nM 下进行的细胞迁移实验表明,化合物 16 减少了 SK3+HEK293T 细胞的迁移率 19.6±2.7%。

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