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Enzyme overexpression - an exercise toward understanding regulation of heparan sulfate biosynthesis

机译:酶过度表达-理解硫酸乙酰肝素生物合成调控的运动

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摘要

Biosynthesis of heparan sulfate (HS) involves conversion of D-glucuronic acid (GlcA) to L-iduronic acid (IdoA) units catalyzed by glucuronyl C5-epimerase (Hsepi). IdoA units are the favored substrate for 2-O-sulfotransferase (2OST). We used HEK293 cells as a model to investigate the effects of overexpression of these enzymes on HS structure. Overexpression of Hsepi alone resulted in an unexpected increase in HS chain length. A Hsepi point-mutant (Y168A), devoid of catalytic activity, failed to affect chain length. Moreover, the effect of Hsepi overexpression on HS chain length was abolished by simultaneous overexpression of 2OST. These findings raise novel aspects on regulation of HS biosynthesis. We propose a hypothetical enzyme-binding protein (EBP) with distinct, specific and partly overlapping binding sites, the interactions of which will determine levels of enzymes available to the biosynthetic process.
机译:硫酸乙酰肝素(HS)的生物合成涉及D-葡萄糖醛酸(GlcA)转化为葡萄糖醛酸酰基C5-表异构酶(Hsepi)催化的L-艾杜糖酸(IdoA)单元。 IdoA单元是2-O-磺基转移酶(2OST)的首选底物。我们使用HEK293细胞作为模型来研究这些酶过表达对HS结构的影响。仅Hsepi的过表达导致HS链长度的意外增加。没有催化活性的Hsepi点突变体(Y168A)无法影响链长。此外,Hsepi过表达对HS链长度的影响被2OST同时过表达所消除。这些发现提出了关于HS生物合成调节的新方面。我们提出了一种假想的酶结合蛋白(EBP),具有独特,特异性和部分重叠的结合位点,其相互作用将决定可用于生物合成过程的酶的水平。

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