Tomiya Noboru, Narang Someet, Park Jung, Abdul-Rahman Badarulhisam, Choi One, Singh Sundeep, Hiratake Jun, Sakata Kanzo, Betenbaugh Michael J, Palter Karen B, Lee Yuan C
Department of Biology, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Biol Chem. 2006 Jul 14;281(28):19545-60. doi: 10.1074/jbc.M603312200. Epub 2006 May 9.
Paucimannosidic glycans are often predominant in N-glycans produced by insect cells. However, a beta-N-acetylhexosaminidase responsible for the generation of paucimannosidic glycans in lepidopteran insect cells has not been identified. We report the purification of a beta-N-acetylhexosaminidase from the culture medium of Spodoptera frugiperda Sf9 cells (Sfhex). The purified Sfhex protein showed 10 times higher activity for a terminal N-acetylglucosamine on the N-glycan core compared with tri-N-acetylchitotriose. Sfhex was found to be a homodimer of 110 kDa in solution, with a pH optimum of 5.5. With a biantennary N-glycan substrate, it exhibited a 5-fold preference for removal of the beta(1,2)-linked N-acetylglucosamine from the Man alpha(1,3) branch compared with the Man alpha(1,6) branch. We isolated two corresponding cDNA clones for Sfhex that encode proteins with >99% amino acid identity. A phylogenetic analysis suggested that Sfhex is an ortholog of mammalian lysosomal beta-N-acetylhexosaminidases. Recombinant Sfhex expressed in Sf9 cells exhibited the same substrate specificity and pH optimum as the purified enzyme. Although a larger amount of newly synthesized Sfhex was secreted into the culture medium by Sf9 cells, a significant amount of Sfhex was also found to be intracellular. Under a confocal microscope, cellular Sfhex exhibited punctate staining throughout the cytoplasm, but did not colocalize with a Golgi marker. Because secretory glycoproteins and Sfhex are cotransported through the same secretory pathway and because Sfhex is active at the pH of the secretory compartments, this study suggests that Sfhex may play a role as a processing beta-N-acetylhexosaminidase acting on N-glycans from Sf9 cells.
寡甘露糖型聚糖在昆虫细胞产生的 N-聚糖中通常占主导地位。然而,尚未鉴定出负责在鳞翅目昆虫细胞中产生寡甘露糖型聚糖的 β-N-乙酰己糖胺酶。我们报道了从草地贪夜蛾 Sf9 细胞(Sfhex)的培养基中纯化出一种 β-N-乙酰己糖胺酶。纯化后的 Sfhex 蛋白对 N-聚糖核心上的末端 N-乙酰葡糖胺的活性比对三-N-乙酰壳三糖高 10 倍。发现 Sfhex 在溶液中是 110 kDa 的同二聚体,最适 pH 为 5.5。对于双天线 N-聚糖底物,与 Manα(1,6) 分支相比,它对从 Manα(1,3) 分支去除 β(1,2)-连接的 N-乙酰葡糖胺表现出 5 倍的偏好。我们分离出了两个对应于 Sfhex 的 cDNA 克隆,它们编码的蛋白质氨基酸同一性>99%。系统发育分析表明,Sfhex 是哺乳动物溶酶体 β-N-乙酰己糖胺酶的直系同源物。在 Sf9 细胞中表达的重组 Sfhex 表现出与纯化酶相同的底物特异性和最适 pH。尽管 Sf9 细胞将大量新合成的 Sfhex 分泌到培养基中,但也发现大量 Sfhex 存在于细胞内。在共聚焦显微镜下,细胞内的 Sfhex 在整个细胞质中呈现点状染色,但不与高尔基体标记物共定位。由于分泌型糖蛋白和 Sfhex 通过相同的分泌途径共同运输,并且由于 Sfhex 在分泌小泡的 pH 下具有活性,这项研究表明 Sfhex 可能作为一种加工 β-N-乙酰己糖胺酶,作用于 Sf9 细胞的 N-聚糖。