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在肽合成仪中对大型、单分散甘露糖基化树枝状分子进行直接固相合成和荧光标记。

Direct solid-phase synthesis and fluorescence labeling of large, monodisperse mannosylated dendrons in a peptide synthesizer.

作者信息

Kantchev Eric Assen B, Chang Chung-Chieh, Cheng Shu-Fang, Roche Annie-Claude, Chang Ding-Kwo

机构信息

Institute of Chemistry, Academia Sinica, 128 Sec. 2 Academia Rd, Nankang, Taipei 11529, Taiwan, ROC.

出版信息

Org Biomol Chem. 2008 Apr 21;6(8):1377-85. doi: 10.1039/b719737c. Epub 2008 Feb 25.

Abstract

Fluorophore-labeled glycodendrimers have potential use in the study of carbohydrate-protein interactions by fluorescence spectroscopy and imaging methods. The current solution-phase methods for preparation of such glycoconjugates are labour intensive. On the other hand, the intrinsically more efficient solid-phase methods have been explored only at low generations. Herein we disclose a direct, expedient glycodendrimer synthesis from commercially available or easily prepared building blocks by machine-assisted solid-phase peptide synthesis (SPPS). Large, monodisperse 4th- and 5th-generation polylysine dendrons are prepared and capped with 16 and 32 mannose residues, respectively, in a single synthetic operation. Incorporation of a C-terminal lysine residue in the 4th-generation dendron allows fluorescence labelling with a number of common labels on resin, in organic solvent or in aqueous buffer, as required. A single HPLC purification is sufficient in all cases to obtain a homogeneous sample. The monodispersity of the glycodendrons is confirmed by MALDI-TOF. FITC-labeled 4th-generation glycodendron is an excellent probe for the imaging studies of mannose-receptor-mediated entry of into dendritic cells by confocal fluorescence microscopy.

摘要

荧光团标记的糖树枝状大分子在通过荧光光谱法和成像方法研究碳水化合物 - 蛋白质相互作用方面具有潜在用途。目前制备此类糖缀合物的溶液相方法劳动强度大。另一方面,本质上更高效的固相方法仅在低代数时得到探索。在此,我们公开了一种通过机器辅助固相肽合成(SPPS)从市售或易于制备的构建块直接、便捷地合成糖树枝状大分子的方法。制备了大的、单分散的第4代和第5代聚赖氨酸树枝状分子,并分别在一次合成操作中用16个和32个甘露糖残基进行封端。在第4代树枝状分子中引入C末端赖氨酸残基,可根据需要在树脂上、有机溶剂中或水性缓冲液中用多种常见标记进行荧光标记。在所有情况下,单次高效液相色谱(HPLC)纯化就足以获得均一样品。通过基质辅助激光解吸电离飞行时间(MALDI - TOF)确认了糖树枝状分子的单分散性。异硫氰酸荧光素(FITC)标记的第4代糖树枝状大分子是通过共聚焦荧光显微镜对甘露糖受体介导的进入树突状细胞进行成像研究的优良探针。

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