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CMP substitutions preferentially inhibit polysialic acid synthesis

机译:CMP取代优先抑制聚唾液酸的合成

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It is widely reported that derivatives of sugar moieties can be used to metabolically label cell surface carbohydrates or inhibit a particular glycosylation. However, few studies address the effect of substitution of the cytidylmonophosphate (CMP) portion on sialyltransferase activities. Here we first synthesized 2′-O-methyl CMP and 5-methyl CMP and then asked if these CMP derivatives are recognized by α2,3-sialyltransferases (ST3Gal-III and ST3Gal-IV), α2,6-sialyltransferase (ST6Gal-I), and α2,8-sialyltransferase (ST8Sia-II, ST8Sia-III, and ST8Sia-IV). We found that ST3Gal-III and ST3Gal-IV but not ST6Gal-I was inhibited by 2′-O-methyl CMP as potently as by CMP, while ST3Gal-III, ST3Gal-IV, and ST6Gal-I were moderately inhibited by 5-methyl CMP. Previously, it was reported that polysialyltransferase ST8Sia-II but not ST8Sia-IV was inhibited by CMP N-butylneuraminic acid. We found that ST8Sia-IV as well as ST8Sia-II and ST8Sia-III are inhibited by 2′-O-methyl CMP as robustly as by CMP and moderately by 5-methyl CMP. Moreover, the addition of CMP, 2′-O-methyl CMP, and 5-methyl CMP to the culture medium resulted in the decrease of polysialic acid expression on the cell surface and NCAM of Chinese hamster ovary cells. These results suggest that 2′-O-methyl CMP and 5-methyl CMP can be used to preferentially inhibit sialyltransferases, in particular, polysialyltransferases in vitro and in vivo. Such inhibition may be useful to determine the function of a carbohydrate synthesized by a specific sialyltransferase such as polysialyltransferase.
机译:广泛报道糖部分的衍生物可用于代谢标记细胞表面碳水化合物或抑制特定的糖基化。但是,很少有研究探讨取代胞苷基单磷酸酯(CMP)部分对唾液酸转移酶活性的影响。在这里,我们首先合成2'-O-甲基CMP和5-甲基CMP,然后询问这些CMP衍生物是否被α2,3-唾液酸转移酶(ST3Gal-III和ST3Gal-IV),α2,6-唾液酸转移酶(ST6Gal-I)识别)和α2,8-唾液酸转移酶(ST8Sia-II,ST8Sia-III和ST8Sia-IV)。我们发现2'-O-甲基CMP对ST3Gal-III和ST3Gal-IV的抑制作用与对CMP一样有效,而对ST3Gal-IV的抑制作用却与对CMP的抑制作用相同,而对ST3Gal-III,ST3Gal-IV和ST6Gal-I的抑制作用则被5-中等程度地抑制。甲基CMP。以前,据报道,CMP N-丁基神经氨酸抑制聚唾液酸转移酶ST8Sia-II而不抑制ST8Sia-IV。我们发现2′-O-甲基CMP对ST8Sia-IV以及ST8Sia-II和ST8Sia-III的抑制作用均与CMP一样强,而对5-甲基CMP则有中等程度的抑制作用。此外,向培养基中添加CMP,2'-O-甲基CMP和5-甲基CMP导致中国仓鼠卵巢细胞的细胞表面和NCAM上的多唾液酸表达降低。这些结果表明2'-O-甲基CMP和5-甲基CMP可用于在体外和体内优先抑制唾液酸转移酶,特别是多唾液酸转移酶。这种抑制作用可用于确定由特定的唾液酸转移酶如聚唾液酸转移酶合成的碳水化合物的功能。

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