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Role of N-glycosylation of human lysosomal phospholipase A2 for the formation of catalytically active enzyme

机译:人溶酶体磷脂酶A2的N-糖基化在催化活性酶形成中的作用

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摘要

To understand the role of N-glycosylation of lysosomal phospholipase A2 (LPLA2), four potential N-glycosylation sites in human LPLA2 (hLPLA2) were individually modified replacing asparagine (Asn) with alanine by site-direct mutagenesis. COS-7 cells transiently transfected with wild-type (WT) hLPLA2 gene produced catalytically active LPLA2. A single mutation at 273-, 289-, or 398-Asn partially reduced production of active LPLA2. A single mutation at 99-Asn and quadruple mutations at all four Asn sites resulted in a marked reduction of active LPLA2 and loss of active LPLA2, respectively. Western blot analysis using anti-hLPLA2 antibody showed that the LPLA2 expression level was similar between all transfectants. N-glycosidase F digestion revealed that multiple forms of LPLA2 found in individual transfectants are due to different N-glycans linked to the core protein. The LPLA2 activity in individual transfectants was mostly recovered in the soluble fraction and correlated to the quantity of LPLA2 detected in the soluble fraction. LPLA2 mutated at 99-Asn was mostly retained in the membrane fraction. The WT transfectants treated with tunicamycin markedly lost LPLA2 activity. These data indicate that the 99-Asn is the most critical N-glycosylation site for formation of native hLPLA2 in vivo and that the N-glycosylation of LPLA2 is crucial for biosynthesis of catalytically active hLPLA2.
机译:为了了解溶酶体磷脂酶A2(LPLA2)的N-糖基化作用,通过位点直接诱变分别修饰了人LPLA2(hLPLA2)中的四个潜在N-糖基化位点,用丙氨酸代替天冬酰胺(Asn)。野生型(WT)hLPLA2基因瞬时转染的COS-7细胞产生催化活性LPLA2。 273-,289-或398-Asn处的单个突变会部分减少活性LPLA2的产生。 99-Asn处的单个突变和所有四个Asn位点处的四个突变分别导致活性LPLA2显着减少和活性LPLA2丢失。使用抗hLPLA2抗体的蛋白质印迹分析表明,所有转染子之间的LPLA2表达水平均相似。 N-糖苷酶F消化显示,在单个转染子中发现的多种形式的LPLA2是由于与核心蛋白连接的不同N-聚糖所致。单个转染子中的LPLA2活性大部分在可溶性级分中恢复,并与可溶性级分中检测到的LPLA2量相关。在99-Asn处突变的LPLA2大部分保留在膜级分中。用衣霉素处理的WT转染子明显丧失了LPLA2活性。这些数据表明99-Asn是体内天然hLPLA2形成的最关键的N-糖基化位点,并且LPLA2的N-糖基化对于催化活性hLPLA2的生物合成至关重要。

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