Logo image
Chemoenzymatic Synthesis of GAA-7 Glycan Analogues and Evaluation of Their Neuritogenic Activities
期刊文章

Chemoenzymatic Synthesis of GAA-7 Glycan Analogues and Evaluation of Their Neuritogenic Activities

Hsin-Kai Tseng, Yung-Yu Su, Po-Jen Lai, Shao-Lun Lo, Hsien-Chein Liu, Sabbasani Rajasekhara Reddy, Linyi ChenChun-Cheng Lin
ACS Chemical Neuroscience, 卷.15(3), 頁碼.656-670
01/2024
PMID: 38206798

摘要

enzymatic synthesis;GAA-7;gangliosides;neurite outgrowth;neuronal differentiation Biochemistry Physiology Cognitive Neuroscience Cell Biology

Ganglioside GAA-7 exhibits higher neurite outgrowth than ganglioside GM1a and most echinodermatous gangliosides (EGs) when tested on neuron-like rat adrenal pheochromocytoma (PC12) cells in the presence of nerve growth factor (NGF). The unique structure of GAA-7 glycan, containing an uncommon sialic acid (8-O-methyl-N-glycolylneuraminic acid) and sialic acid-α-2,3-GalNAc linkage, makes it challenging to synthesize. We recently developed a streamlined method to chemoenzymatically synthesize GAA-7 glycan and employed this modular strategy to efficiently prepare a library of GAA-7 glycan analogues incorporating N-modified or 8-methoxyl sialic acids. Most of these synthetic glycans exhibited moderate efficacy in promoting neuronal differentiation of PC12 cells. Among them, the analogue containing common sialic acid shows greater potential than the GAA-7 glycan itself. This result reveals that methoxy modification is not essential for neurite outgrowth. Consequently, the readily available analogue presents a promising model for further biological investigations.

相關連結

指標

1 檢視次數

詳細資料

Logo image